Johannes M. Kaa, Christian Sternemann, Karen Appel, Valerio Cerantola, Thomas R. Preston, Christian Albers, Mirko Elbers, Lélia Libon, Mikako Makita, Alexander Pelka, Sylvain Petitgirard, Christian Plückthun, Vladimir Roddatis, Christoph J. Sahle, Georg Spiekermann, Christian Schmidt, Anja Schreiber, Robin Sakrowski, Metin Tolan, Max Wilke, Ulf Zastrau, and Zuzana Konôpková
Phys. Rev. Research 4, 033042 (2022) - Published 15 July, 2022
Researchers heat iron carbonate samples under high pressure without destroying the sample enclosure, a feat that enables lab-based studies of the spin properties of materials deep inside Earth and other planets.
Patrick Emonts and Ivan Kukuljan
Phys. Rev. Research 4, 033039 (2022) - Published 14 July, 2022
The authors develop a method to compute entanglement measures of quantum field theories directly in the continuum based on Hamiltonian truncation.
A. Rodin, B. A. Olsen, M. Choi, and A. Tan
Phys. Rev. Research 4, 033057 (2022) - Published 18 July, 2022
Numerical simulations of classical equations of motion reveal that a single coupling to an infinite chain is sufficient to induce thermalization.
Daisuke Takegami, Laurent Nicolaï, Yuki Utsumi, Anna Meléndez-Sans, Daria A. Balatsky, Cariad-A. Knight, Connor Dalton, Shao-Lun Huang, Chi-Sheng Chen, Li Zhao, Alexander C. Komarek, Yen-Fa Liao, Ku-Ding Tsuei, Ján Minár, and Liu Hao Tjeng
Phys. Rev. Research 4, 033108 (2022) - Published 8 August, 2022
Orientation dependent hard x-ray photoelectron spectroscopy can make direct images of the orbitals making up the band structure. The imaging provides energy specific information in real-space and is calculation-free.
Lucy Liu, Gary P. T. Choi, and L. Mahadevan
Phys. Rev. Research 4, 033114 (2022) - Published 10 August, 2022
Quasicrystalline patterns are used to design deployable kirigami structures, craft them with paper sheets, and study their topological, geometrical, and mechanical properties,
L. Simonson, S. K. Ozdemir, A. Eisfeld, A. Metelmann, and R. El-Ganainy
Phys. Rev. Research 4, 033226 (2022) - Published 19 September, 2022
The quantum noise in exceptional points-based optical amplifiers does not scale universally with the order of the exceptional point but rather can vary from one implementation to another.
Max Lipton, Alex Townsend, and Steven H. Strogatz
Phys. Rev. Research 4, 033249 (2022) - Published 30 September, 2022
The electrostatic equilibrium points and equipotential surfaces around uniformly charged loops in the plane and knots in three dimensions is studied. Findings include symmetry-breaking bifurcations as well as topological transitions as the shape of the charge distribution or the level of the potential are varied.
Sharon Berkowicz, Sudipta Das, Mario Reiser, Mariia Filianina, Maddalena Bin, Giulio Crevatin, Franz Hennies, Clemens Weninger, Alexander Björling, Paul Bell, and Fivos Perakis
Phys. Rev. Research 4, L032012 (2022) - Published 25 July, 2022
The authors show that nanofocused x-ray photon correlation spectroscopy can enhance sensitivity to nanoscale spatial fluctuations and yields a multi-fold increase in speckle contrast.
Ying Su, Heqiu Li, Chuanwei Zhang, Kai Sun, and Shi-Zeng Lin
Phys. Rev. Research 4, L032024 (2022) - Published 12 August, 2022
A general model to realize topological flat minibands by considering massive Dirac fermions confined in a periodic potential can be realized in various moiré systems and survive to arbitrarily large Dirac band gap.
P. I. Karpov, G.-Y. Zhu, M. P. Heller, and M. Heyl
Phys. Rev. Research 4, L032001 (2022) - Published 1 July, 2022
This work shows that quantum Ising spin chains provide a platform to probe elastic and inelastic particle collisions for lattice gauge theory with confinement.
Miha Srdinšek, Michele Casula, and Rodolphe Vuilleumier
Phys. Rev. Research 4, L032002 (2022) - Published 5 July, 2022
The authors introduce a low-variance scheme for the evaluation of quantum Rényi entropy in stochastic simulations of strongly entangled systems.
J. Kim, S. Wilks, A. Kemp, M. Sherlock, T. Ma, F. Beg, and D. Mariscal
Phys. Rev. Research 4, L032003 (2022) - Published 6 July, 2022
This article presents a study of ion acceleration that optimizes a combination of target transparency and extended field acceleration with two sequential laser pulses.
Liang Li, Guo-Xiang Zhi, Qinqing Zhu, Chunxiang Wu, Zhihua Yang, Jianhua Du, Jinhu Yang, Bin Chen, Hangdong Wang, Chao Cao, and Minghu Fang
Phys. Rev. Research 4, L032004 (2022) - Published 7 July, 2022
This paper shows the onset of superconductivity in LaPtBi, which is also predicated to be a topologically nontrivial nodal-ring material even in the presence of spin-orbital coupling.
Sergi Julià-Farré, Daniel González-Cuadra, Alexander Patscheider, Manfred J. Mark, Francesca Ferlaino, Maciej Lewenstein, Luca Barbiero, and Alexandre Dauphin
Phys. Rev. Research 4, L032005 (2022) - Published 8 July, 2022
The authors show that the bond order wave has a topological sector and propose a way to simulate such a phase with dipolar gases in an optical lattice.
Ran Peng and Jianpeng Liu
Phys. Rev. Research 4, L032006 (2022) - Published 11 July, 2022
The authors study the piezoelectric response of moire graphene systems possessing topologically nontrivial flat bands with nonzero valley Chern numbers.
Yu-Hsueh Chen, Po-Han Lin, Guan-Ying Wang, Adriana Pálffy, and Wen-Te Liao
Phys. Rev. Research 4, L032007 (2022) - Published 11 July, 2022
The authors show ithat transient nuclear population inversion can be generated by a focused x-ray free electron laser pulse in a tapered waveguide where a nuclear sample is placed at the focal point.
Xiaoyang Shen, Zhengzhi Wu, Linhao Li, Zhehan Qin, and Hong Yao
Phys. Rev. Research 4, L032008 (2022) - Published 13 July, 2022
This article reports on a finite temperature phase transition in the four-dimensional X-cube model. The authors have proposed the low temperature phase spontaneously breaks the 1-form subsystem symmetry.
Adeline Kabacinski, Fabien Tissandier, Julien Gautier, Jean-Philippe Goddet, Igor Andriyash, Philippe Zeitoun, Stéphane Sebban, Eduardo Oliva, and Michaela Kozlová
Phys. Rev. Research 4, L032009 (2022) - Published 18 July, 2022
The authors demonstrate the strong pulse shortening of a seeded-plasma based soft X-ray laser at high electron densities down to the femtosecond timescale.
Cristina Mier, Deung-Jang Choi, and Nicolás Lorente
Phys. Rev. Research 4, L032010 (2022) - Published 22 July, 2022
The authors study the oscillations in energy of edge states in spin chains on superconductors.
K. Baskourelos, O. Tsilipakos, T. Stefański, S. F. Galata, E. N. Economou, M. Kafesaki, and K. L. Tsakmakidis
Phys. Rev. Research 4, L032011 (2022) - Published 25 July, 2022
The authors show the onset of topologically protected light transmission from a waveguide slit to free space, which becomes extraordinary when normalized to the incident power only on the slit.
Sharon Berkowicz, Sudipta Das, Mario Reiser, Mariia Filianina, Maddalena Bin, Giulio Crevatin, Franz Hennies, Clemens Weninger, Alexander Björling, Paul Bell, and Fivos Perakis
Phys. Rev. Research 4, L032012 (2022) - Published 25 July, 2022
The authors show that nanofocused x-ray photon correlation spectroscopy can enhance sensitivity to nanoscale spatial fluctuations and yields a multi-fold increase in speckle contrast.
Woo-Ram Lee, Zhangjie Qin, Robert Raussendorf, Eran Sela, and V. W. Scarola
Phys. Rev. Research 4, L032013 (2022) - Published 25 July, 2022
The authors develop a measurement-based quantum simulation algorithm to find energy eigenvalues in fermionic models using effective time evolution via measurements on graph states.
Gouhei Tanaka, Tadayoshi Matsumori, Hiroaki Yoshida, and Kazuyuki Aihara
Phys. Rev. Research 4, L032014 (2022) - Published 28 July, 2022
A proposed reservoir computing model demonstrates that neuronal diversity can improve time series prediction performance of artificial neural networks.
H. S. Xu and L. Jin
Phys. Rev. Research 4, L032015 (2022) - Published 28 July, 2022
Coherent resonant transmission and perfect mode conversion is proposed in a coupled resonator array with intermodal coupling between the clockwise and counterclockwise modes.
Nicolas Laflorencie, Gabriel Lemarié, and Nicolas Macé
Phys. Rev. Research 4, L032016 (2022) - Published 29 July, 2022
A numerical investigation shows that many-body localization (MBL) protects topological order at all energies in random interacting Ising/Majorana chains, thus opening perspectives for MBL-protected topological qubits.
Guo-Hua Xu and Gentaro Watanabe
Phys. Rev. Research 4, L032017 (2022) - Published 1 August, 2022
Intercycle correlation can reduce fluctuations in the multiple-cycle operations of small heat engines.
Yucen Han, James Dalby, Apala Majumdar, Benjamin M. G. D. Carter, and Thomas Machon
Phys. Rev. Research 4, L032018 (2022) - Published 2 August, 2022
The authors provide a mechanism to build a dictionary for pathways between competing static states.
Kazuya Shinjo, Shigetoshi Sota, and Takami Tohyama
Phys. Rev. Research 4, L032019 (2022) - Published 3 August, 2022
A terahertz pulse generating quantum tunneling in a Mott insulator leads to glassy dynamics with the suppression of the Drude weight.
Chiara Gattinoni and Nicola A. Spaldin
Phys. Rev. Research 4, L032020 (2022) - Published 5 August, 2022
Density-functional computations show the existence of a “polarizing field” in ultrathin nonferroelectric insulators with charged ionic layers, which leads to ferroelectriclike distortions.
Mathias Van Regemortel, Oles Shtanko, Luis Pedro García-Pintos, Abhinav Deshpande, Hossein Dehghani, Alexey V. Gorshkov, and Mohammad Hafezi
Phys. Rev. Research 4, L032021 (2022) - Published 9 August, 2022
Varying the way in which dissipative quantum dynamics is monitored may induce entanglement between the constituents and result in a classically hard to sample sequence of quantum jumps.
Giacomo Sorelli, Manuel Gessner, Mattia Walschaers, and Nicolas Treps
Phys. Rev. Research 4, L032022 (2022) - Published 10 August, 2022
An analytical expression that estimates the separation between two point sources in arbitrary Gaussian states determines how different resources affect the scaling of the ultimate resolution limit with the mean number of emitted photons.
Daisuke Yamamoto, Kotaro Bannai, Nobuo Furukawa, and Carlos A. R. Sá de Melo
Phys. Rev. Research 4, L032023 (2022) - Published 12 August, 2022
A rich variety of supersolid phases emerge and form a devil’s staircase with a fractal dimension between 0 and 1 by tuning spin-orbit coupling for interacting bosons in optical lattices.
Ying Su, Heqiu Li, Chuanwei Zhang, Kai Sun, and Shi-Zeng Lin
Phys. Rev. Research 4, L032024 (2022) - Published 12 August, 2022
A general model to realize topological flat minibands by considering massive Dirac fermions confined in a periodic potential can be realized in various moiré systems and survive to arbitrarily large Dirac band gap.
Kristian Mæland and Asle Sudbø
Phys. Rev. Research 4, L032025 (2022) - Published 12 August, 2022
The authors present eight quantum topological phase transitions driven by tuning the easy-axis spin-anisotropy in quantum skyrmion crystals.
Christoph Fleckenstein, Alberto Zorzato, Daniel Varjas, Emil J. Bergholtz, Jens H. Bardarson, and Apoorv Tiwari
Phys. Rev. Research 4, L032026 (2022) - Published 15 August, 2022
Non-Hermitian topological phase transitions can be induced and probedby measurements in free fermionic systems.
G. T. Roberg-Clark, G. G. Plunk, and P. Xanthopoulos
Phys. Rev. Research 4, L032028 (2022) - Published 15 August, 2022
Insight gained from a simple method to rapidly calculate a lower bound for the critical gradient at which ion-temperature-gradient modes are destabilized in stellarators yields a new configuration, based on the Wendelstein 7-X stellarator, with an increased critical gradient as well as reduced turbulent heat fluxes.
Huan Cao, Ning-Ning Wang, Zhian Jia, Chao Zhang, Yu Guo, Bi-Heng Liu, Yun-Feng Huang, Chuan-Feng Li, and Guang-Can Guo
Phys. Rev. Research 4, L032029 (2022) - Published 16 August, 2022
Indefinite causal order enables heat transfer even when the system and reservoir are initially in thermal equilibrium. A quantum refrigerator is constructed as an example application.
O. Grånäs et al.
Phys. Rev. Research 4, L032030 (2022) - Published 16 August, 2022
A strong nonresonant pumping may modify the microscopic interaction parameters in a prototypical correlated insulator NiO. Findings show that the effective hopping parameter is malleable, whereas the effective local Coulomb repulsion is inert.
Dung Xuan Nguyen, Xavier Letartre, Emmanuel Drouard, Pierre Viktorovitch, H. Chau Nguyen, and Hai Son Nguyen
Phys. Rev. Research 4, L032031 (2022) - Published 19 August, 2022
The moiré configurations of two unidimensional photonic crystal slabs with mismatched periods exhibit emergent flatbands at magic distances.
T. Amano, Y. Kawakami, H. Itoh, K. Konno, Y. Hasegawa, T. Aoyama, Y. Imai, K. Ohgushi, Y. Takeuchi, Y. Wakabayashi, K. Goto, Y. Nakamura, H. Kishida, K. Yonemitsu, and S. Iwai
Phys. Rev. Research 4, L032032 (2022) - Published 19 August, 2022
The authors show that an ultrafast photoinduced magnetization results from coherent charge motion between different orbitals of Ru ions in the honeycomb-lattice spin-liquid candidate α-RuCl.
Can Xu, Xuan Wang, and Per Sebastian Skardal
Phys. Rev. Research 4, L032033 (2022) - Published 22 August, 2022
An exact, analytical expression for the emergence of explosive synchronization in systems of coupled phase oscillators is derived and explored.
Jaegon Um, Konstantin E. Dorfman, and Hyunggyu Park
Phys. Rev. Research 4, L032034 (2022) - Published 25 August, 2022
Investigating all possible steady-state solutions in a particle-exchanging double-quantum-dot heat engine coupled to heat baths in parallel reveals a possibility of a power-enhanced heat engine by quantum coherence.
José-Agustín Arguedas-Leiva, Enda Carroll, Luca Biferale, Michael Wilczek, and Miguel D. Bustamante
Phys. Rev. Research 4, L032035 (2022) - Published 29 August, 2022
A minimal phase-coupling model captures features of turbulence and reveals the intricate relation between real-space coherent structures, non-Gaussian statistics, and Fourier-phase synchronization.
Adithya Sriram and Martin Claassen
Phys. Rev. Research 4, L032036 (2022) - Published 1 September, 2022
A driving -RuCl with a circularly polarized light field is used to coherently manipulate the magnetic phase of the material and steer it toward a Kitaev quantum spin liquid.
Lei Pan and Hui Zhai
Phys. Rev. Research 4, L032037 (2022) - Published 6 September, 2022
A proposed composite spin approach can provide a simple and unified description of both the ground state and the many-body scar states in the PXP model, describing one-dimensional Rydberg atom arrays.
Yimeng Wang, Siddhant Pandey, Chris H. Greene, and Niranjan Shivaram
Phys. Rev. Research 4, L032038 (2022) - Published 6 September, 2022
Attosecond bandwidth entangled biphoton generation by two-photon decay of metastable helium atoms is proposed as a source for attosecond experiments with potential to reach the zeptosecond regime using heliumlike ions.
Toby Kay and Luca Giuggioli
Phys. Rev. Research 4, L032039 (2022) - Published 7 September, 2022
The authors propose an expression for the random movement in the presence of permeable barriers that generalizes the diffusion and Smoluchowski equation.
G. Cassabois, G. Fugallo, and B. Gil
Phys. Rev. Research 4, L032040 (2022) - Published 12 September, 2022
The superradiance of optical phonons during the two- to three-dimensional crossover of the light-matter interaction in multilayers of atomic crystals is studied.
Shilei Ding, Paul Noël, Gunasheel Kauwtilyaa Krishnaswamy, and Pietro Gambardella
Phys. Rev. Research 4, L032041 (2022) - Published 19 September, 2022
An electric current flowing in a semioxidized Cu layer induces a transverse flow of orbital angular momentum into an adjacent ferromagnetic layer. A nonreciprocal magnetoresistance emerges, which arises from the interaction of the orbital current and magnetization and that changes signs upon reversal of either.
Kunkun Wang, Ruqiao Xia, Léa Bresque, and Peng Xue
Phys. Rev. Research 4, L032042 (2022) - Published 22 September, 2022
A quantum engine fueled by entanglement and local measurements is simulated in an interferometric network by using single photons. The experiment is further generalized to a multiqubit chain for energy up-conversion.
Pei-Lin Zheng, Si-Jing Du, and Yi Zhang
Phys. Rev. Research 4, L032043 (2022) - Published 22 September, 2022
An alternative strategy for ground-state properties of target quantum Hamiltonians via classical optimization where the searches follow quantum constraints obtainable via machine learning is proposed.
Cody Petrie, Christian Anderson, Casie Maekawa, Travis Maekawa, and Mark K. Transtrum
Phys. Rev. Research 4, L032044 (2022) - Published 23 September, 2022
The authors propose a framework for models able to predict behaviors quantitatively different than those on which they were trained.
N. Ahmadiniaz, M. Geller, J. König, P. Kratzer, A. Lorke, G. Schaller, and R. Schützhold
Phys. Rev. Research 4, L032045 (2022) - Published 26 September, 2022
The quantum Zeno control of discrete states that are coupled to a realistic continuum poses significant challenges on required measurement rates. Reservoir engineering by a magnetic field can improve the situation.
Xiaoling Wu, Fan Yang, Shuo Yang, Klaus Mølmer, Thomas Pohl, Meng Khoon Tey, and Li You
Phys. Rev. Research 4, L032046 (2022) - Published 28 September, 2022
The authors propose a multicolor Rydberg dressing scheme to realize a site-selective spin-exchange interaction and show that it can be used to manipulate synthetic gauge fluxes in a Rydberg lattice at the level of individual plaquette.
Yuki Ishiguro, Jun Sato, Takahiro Ezaki, and Katsuhiro Nishinari
Phys. Rev. Research 4, L032047 (2022) - Published 30 September, 2022
Quantum states of dark multi-soliton are constructed from superpositions of eigenstates in the one-dimensional Bose gas, and the dynamics of the colliding quantum dark solitons is investigated.
B. Ladewig, S. Diehl, and M. Buchhold
Phys. Rev. Research 4, 033001 (2022) - Published 1 July, 2022
Raffaele Resta
Phys. Rev. Research 4, 033002 (2022) - Published 1 July, 2022
Jalal Sarabadani, Ralf Metzler, and Tapio Ala-Nissila
Phys. Rev. Research 4, 033003 (2022) - Published 1 July, 2022
L. Chaix, B. Lebert, H. Miao, A. Nicolaou, F. Yakhou, H. Cercellier, S. Grenier, N. B. Brookes, A. Sulpice, S. Tsutsui, A. Bosak, L. Paolasini, D. Santos-Cottin, H. Yamamoto, I. Yamada, M. Azuma, T. Nishikubo, T. Yamamoto, M. Katsumata, M. P. M. Dean, and M. d'Astuto
Phys. Rev. Research 4, 033004 (2022) - Published 5 July, 2022
Raphaël Menu, Josias Langbehn, Christiane P. Koch, and Giovanna Morigi
Phys. Rev. Research 4, 033005 (2022) - Published 5 July, 2022
Zheng Zhang, Yanzhen Cai, Jing Kang, Zhongwen Ouyang, Zhitao Zhang, Anmin Zhang, Jianting Ji, Feng Jin, and Qingming Zhang
Phys. Rev. Research 4, 033006 (2022) - Published 5 July, 2022
W. D. Kalfus, G. J. Ribeill, G. E. Rowlands, H. K. Krovi, T. A. Ohki, and L. C. G. Govia
Phys. Rev. Research 4, 033007 (2022) - Published 5 July, 2022
Zhoutao Lei, Yuangang Deng, and Chaohong Lee
Phys. Rev. Research 4, 033008 (2022) - Published 5 July, 2022
Tianwei Wu, Siyu Huo, K. Alfaro-Bittner, S. Boccaletti, and Zonghua Liu
Phys. Rev. Research 4, 033009 (2022) - Published 5 July, 2022
Marlan O. Scully, Anatoly Svidzinsky, and William Unruh
Phys. Rev. Research 4, 033010 (2022) - Published 5 July, 2022
Astrid T. Rømer, T. A. Maier, Andreas Kreisel, P. J. Hirschfeld, and Brian M. Andersen
Phys. Rev. Research 4, 033011 (2022) - Published 5 July, 2022
Kosuke Mitarai, Yasunari Suzuki, Wataru Mizukami, Yuya O. Nakagawa, and Keisuke Fujii
Phys. Rev. Research 4, 033012 (2022) - Published 6 July, 2022
Manish Verma and Rossitza Pentcheva
Phys. Rev. Research 4, 033013 (2022) - Published 7 July, 2022
Christopher Campbell, Thomás Fogarty, and Thomas Busch
Phys. Rev. Research 4, 033014 (2022) - Published 7 July, 2022
Zan Nie, Fei Li, Felipe Morales, Serguei Patchkovskii, Olga Smirnova, Weiming An, Chaojie Zhang, Yipeng Wu, Noa Nambu, Daniel Matteo, Kenneth A. Marsh, Frank Tsung, Warren B. Mori, and Chan Joshi
Phys. Rev. Research 4, 033015 (2022) - Published 8 July, 2022
Roman Ya. Kezerashvili and Anastasia Spiridonova
Phys. Rev. Research 4, 033016 (2022) - Published 8 July, 2022
Daniel Edler, Luis A. Peña Ardila, Cesar R. Cabrera, and Luis Santos
Phys. Rev. Research 4, 033017 (2022) - Published 11 July, 2022
Tobias Dornheim, Jan Vorberger, Zhandos A. Moldabekov, and Panagiotis Tolias
Phys. Rev. Research 4, 033018 (2022) - Published 11 July, 2022
Alice Pagano, Sebastian Weber, Daniel Jaschke, Tilman Pfau, Florian Meinert, Simone Montangero, and Hans Peter Büchler
Phys. Rev. Research 4, 033019 (2022) - Published 11 July, 2022
Tobias Esswein and Nicola A. Spaldin
Phys. Rev. Research 4, 033020 (2022) - Published 11 July, 2022
Yu-Liang Fang, Jun-Long Zhao, Dong-Xu Chen, Yan-Hui Zhou, Yu Zhang, Qi-Cheng Wu, Chui-Ping Yang, and Franco Nori
Phys. Rev. Research 4, 033022 (2022) - Published 11 July, 2022
Ke-Ji Chen, Fan Wu, Lianyi He, and Wei Yi
Phys. Rev. Research 4, 033023 (2022) - Published 11 July, 2022
Hannes Kiehn, Vijay Pal Singh, and Ludwig Mathey
Phys. Rev. Research 4, 033024 (2022) - Published 11 July, 2022
Ravi Yadav, Sahinur Reja, Rajyavardhan Ray, Jeroen van den Brink, Satoshi Nishimoto, and Oleg V. Yazyev
Phys. Rev. Research 4, 033025 (2022) - Published 11 July, 2022
Xiao Zhang, Tao Zhu, Hongchuan Du, Hong-Gang Luo, Jeroen van den Brink, and Rajyavardhan Ray
Phys. Rev. Research 4, 033026 (2022) - Published 11 July, 2022
Laurin E. Fischer, Daniel Miller, Francesco Tacchino, Panagiotis Kl. Barkoutsos, Daniel J. Egger, and Ivano Tavernelli
Phys. Rev. Research 4, 033027 (2022) - Published 11 July, 2022
Akel Hashim, Rich Rines, Victory Omole, Ravi K. Naik, John Mark Kreikebaum, David I. Santiago, Frederic T. Chong, Irfan Siddiqi, and Pranav Gokhale
Phys. Rev. Research 4, 033028 (2022) - Published 11 July, 2022
Linghua Zhu, Ho Lun Tang, George S. Barron, F. A. Calderon-Vargas, Nicholas J. Mayhall, Edwin Barnes, and Sophia E. Economou
Phys. Rev. Research 4, 033029 (2022) - Published 11 July, 2022
Stephan Fritzsche and Birger Böning
Phys. Rev. Research 4, 033031 (2022) - Published 12 July, 2022
Fredrik Brange, Sebastiano Peotta, Christian Flindt, and Teemu Ojanen
Phys. Rev. Research 4, 033032 (2022) - Published 13 July, 2022
Romain Veyron, Vincent Mancois, Jean-Baptiste Gerent, Guillaume Baclet, Philippe Bouyer, and Simon Bernon
Phys. Rev. Research 4, 033033 (2022) - Published 13 July, 2022
Tudor Giurgica-Tiron, Sonika Johri, Iordanis Kerenidis, Jason Nguyen, Neal Pisenti, Anupam Prakash, Ksenia Sosnova, Ken Wright, and William Zeng
Phys. Rev. Research 4, 033034 (2022) - Published 13 July, 2022
Nabila Tanjeem, Douglas M. Hall, Montana B. Minnis, Ryan C. Hayward, and Gregory M. Grason
Phys. Rev. Research 4, 033035 (2022) - Published 13 July, 2022
V. Montenegro, M. G. Genoni, A. Bayat, and M. G. A. Paris
Phys. Rev. Research 4, 033036 (2022) - Published 13 July, 2022
Giacomo Sala and Pietro Gambardella
Phys. Rev. Research 4, 033037 (2022) - Published 13 July, 2022
Lisa Randolph et al.
Phys. Rev. Research 4, 033038 (2022) - Published 14 July, 2022
Patrick Emonts and Ivan Kukuljan
Phys. Rev. Research 4, 033039 (2022) - Published 14 July, 2022
The authors develop a method to compute entanglement measures of quantum field theories directly in the continuum based on Hamiltonian truncation.
Chao-Chung Huang, Chia-Chin Tsai, Wei-Bang Liao, Tian-Yue Chen, and Chi-Feng Pai
Phys. Rev. Research 4, 033040 (2022) - Published 15 July, 2022
Marko Žnidarič
Phys. Rev. Research 4, 033041 (2022) - Published 15 July, 2022
Johannes M. Kaa, Christian Sternemann, Karen Appel, Valerio Cerantola, Thomas R. Preston, Christian Albers, Mirko Elbers, Lélia Libon, Mikako Makita, Alexander Pelka, Sylvain Petitgirard, Christian Plückthun, Vladimir Roddatis, Christoph J. Sahle, Georg Spiekermann, Christian Schmidt, Anja Schreiber, Robin Sakrowski, Metin Tolan, Max Wilke, Ulf Zastrau, and Zuzana Konôpková
Phys. Rev. Research 4, 033042 (2022) - Published 15 July, 2022
Researchers heat iron carbonate samples under high pressure without destroying the sample enclosure, a feat that enables lab-based studies of the spin properties of materials deep inside Earth and other planets.
J. Knörzer, C. J. van Diepen, T.-K. Hsiao, G. Giedke, U. Mukhopadhyay, C. Reichl, W. Wegscheider, J. I. Cirac, and L. M. K. Vandersypen
Phys. Rev. Research 4, 033043 (2022) - Published 15 July, 2022
Muhammad Redo Ramadhan, Budi Adiperdana, Irwan Ramli, Dita Puspita Sari, Anita Eka Putri, Utami Widyaiswari, Harison binti Rozak, Wan Nurfadhilah Zaharim, Azwar Manaf, Budhy Kurniawan, Mohamed Ismail Mohamed-Ibrahim, Shukri Sulaiman, Takayuki Kawamata, Tadashi Adachi, Yoji Koike, and Isao Watanabe
Phys. Rev. Research 4, 033044 (2022) - Published 15 July, 2022
Hongye Yu (余泓烨), Deyu Lu, Qin Wu, and Tzu-Chieh Wei
Phys. Rev. Research 4, 033045 (2022) - Published 15 July, 2022
Prabesh Gyawali, Rony Saha, Sineth G. Kodikara, Ruipeng Li, Masafumi Fukuto, James T. Gleeson, Gregory P. Smith, Noel A. Clark, Antal Jakli, Hamza Balci, and Samuel Sprunt
Phys. Rev. Research 4, 033046 (2022) - Published 18 July, 2022
Brian Kiraly, Elze J. Knol, Alexander N. Rudenko, Mikhail I. Katsnelson, and Alexander A. Khajetoorians
Phys. Rev. Research 4, 033047 (2022) - Published 18 July, 2022
Florian Ginzel and Guido Burkard
Phys. Rev. Research 4, 033048 (2022) - Published 18 July, 2022
J. Z. Han, C. Pan, K. Y. Zhang, X. F. Yang, S. Q. Zhang, J. C. Berengut, S. Goriely, H. Wang, Y. M. Yu, J. Meng, J. W. Zhang, and L. J. Wang
Phys. Rev. Research 4, 033049 (2022) - Published 18 July, 2022
F. T. Armand Pilon, Y-M. Niquet, J. Chretien, N. Pauc, V. Reboud, V. Calvo, J. Widiez, J. M. Hartmann, A. Chelnokov, J. Faist, and H. Sigg
Phys. Rev. Research 4, 033050 (2022) - Published 18 July, 2022
A. Ranfagni, K. Børkje, F. Marino, and F. Marin
Phys. Rev. Research 4, 033051 (2022) - Published 18 July, 2022
Katsuaki Nakazawa, Yuhki Tsukada, Shin-ichi Amma, Kazutaka Mitsuishi, Kiyou Shibata, and Teruyasu Mizoguchi
Phys. Rev. Research 4, 033052 (2022) - Published 18 July, 2022
Yingying Peng, Xuefei Guo, Qian Xiao, Qizhi Li, Jörg Strempfer, Yongseong Choi, Dong Yan, Huixia Luo, Yuqing Huang, Shuang Jia, Oleg Janson, Peter Abbamonte, Jeroen van den Brink, and Jasper van Wezel
Phys. Rev. Research 4, 033053 (2022) - Published 18 July, 2022
Yongzheng Sun, Wang Li, Liang Li, Guanghui Wen, Sandro Azaele, and Wei Lin
Phys. Rev. Research 4, 033054 (2022) - Published 18 July, 2022
Ohad Vilk, Erez Aghion, Tal Avgar, Carsten Beta, Oliver Nagel, Adal Sabri, Raphael Sarfati, Daniel K. Schwartz, Matthias Weiss, Diego Krapf, Ran Nathan, Ralf Metzler, and Michael Assaf
Phys. Rev. Research 4, 033055 (2022) - Published 18 July, 2022
Xiaoquan Yu and P. B. Blakie
Phys. Rev. Research 4, 033056 (2022) - Published 18 July, 2022
A. Rodin, B. A. Olsen, M. Choi, and A. Tan
Phys. Rev. Research 4, 033057 (2022) - Published 18 July, 2022
Numerical simulations of classical equations of motion reveal that a single coupling to an infinite chain is sufficient to induce thermalization.
Petro Maksymovych, Jiaqiang Yan, Brian Sales, and Jun Wang
Phys. Rev. Research 4, 033058 (2022) - Published 19 July, 2022
Shoichiro Tsutsui, Masaru Hongo, Shintaro Sato, and Takahiro Sagawa
Phys. Rev. Research 4, 033059 (2022) - Published 19 July, 2022
A. Pedram, Ö. E. Müstecaplıoğlu, and I. K. Kominis
Phys. Rev. Research 4, 033060 (2022) - Published 19 July, 2022
Sankar Das Sarma and Fengcheng Wu
Phys. Rev. Research 4, 033061 (2022) - Published 19 July, 2022
Philippe Bourrianne, Vincent Niggel, Gatien Polly, Thibaut Divoux, and Gareth H. McKinley
Phys. Rev. Research 4, 033062 (2022) - Published 19 July, 2022
Dong Huang, Shaoyu Lu, Michael S. Murillo, and Yan Feng
Phys. Rev. Research 4, 033064 (2022) - Published 20 July, 2022
Yuki Sughiyama, Dimitri Loutchko, Atsushi Kamimura, and Tetsuya J. Kobayashi
Phys. Rev. Research 4, 033065 (2022) - Published 21 July, 2022
Tetsuya J. Kobayashi, Dimitri Loutchko, Atsushi Kamimura, and Yuki Sughiyama
Phys. Rev. Research 4, 033066 (2022) - Published 21 July, 2022
Liqin Zhou, Yuting Qian, Changming Yue, Yi Jiang, Zhong Fang, Wei Zhang, Chen Fang, and Hongming Weng
Phys. Rev. Research 4, 033067 (2022) - Published 22 July, 2022
Austin K. Daniel, Yingyue Zhu, C. Huerta Alderete, Vikas Buchemmavari, Alaina M. Green, Nhung H. Nguyen, Tyler G. Thurtell, Andrew Zhao, Norbert M. Linke, and Akimasa Miyake
Phys. Rev. Research 4, 033068 (2022) - Published 22 July, 2022
Malay Pal, Itzhak Fouxon, Alexander M. Leshansky, and Ambarish Ghosh
Phys. Rev. Research 4, 033069 (2022) - Published 25 July, 2022
Alexander Nico-Katz, Abolfazl Bayat, and Sougato Bose
Phys. Rev. Research 4, 033070 (2022) - Published 25 July, 2022
Bin Zhang, Du Ran, Reuven Ianconescu, Aharon Friedman, Jacob Scheuer, Amnon Yariv, and Avraham Gover
Phys. Rev. Research 4, 033071 (2022) - Published 25 July, 2022
Cong Li, Xianxin Wu, Hongxiong Liu, Craig Polley, Qinda Guo, Yang Wang, Xinloong Han, Maciej Dendzik, Magnus H. Berntsen, Balasubramanian Thiagarajan, Youguo Shi, Andreas P. Schnyder, and Oscar Tjernberg
Phys. Rev. Research 4, 033072 (2022) - Published 25 July, 2022
Zhuoran Geng and Ilari J. Maasilta
Phys. Rev. Research 4, 033073 (2022) - Published 25 July, 2022
Sascha Lang, Roland Sauerbrey, Ralf Schützhold, and William G. Unruh
Phys. Rev. Research 4, 033074 (2022) - Published 25 July, 2022
Tatsuhiko N. Ikeda, Satoshi Tanaka, and Yosuke Kayanuma
Phys. Rev. Research 4, 033075 (2022) - Published 25 July, 2022
Anthony M. Polloreno, Ana Maria Rey, and John J. Bollinger
Phys. Rev. Research 4, 033076 (2022) - Published 25 July, 2022
Liu Ziyin, Katsuya Ito, Kentaro Imajo, and Kentaro Minami
Phys. Rev. Research 4, 033077 (2022) - Published 26 July, 2022
Soumen Roy
Phys. Rev. Research 4, 033078 (2022) - Published 26 July, 2022
Giordano De Marzo, Andrea Gabrielli, Andrea Zaccaria, and Luciano Pietronero
Phys. Rev. Research 4, 033079 (2022) - Published 27 July, 2022
Yifan Chen, Min Jiang, Jing Shu, Xiao Xue, and Yanjie Zeng
Phys. Rev. Research 4, 033080 (2022) - Published 27 July, 2022
Jian-Hao Zhang, Shuo Yang, Yang Qi, and Zheng-Cheng Gu
Phys. Rev. Research 4, 033081 (2022) - Published 29 July, 2022
Bingtan Li, Hanyu Liu, Xin Zhong, and Guangtao Liu
Phys. Rev. Research 4, 033082 (2022) - Published 29 July, 2022
Mingyuan Chen, Jiangshan Tang, Lei Tang, Haodong Wu, and Keyu Xia
Phys. Rev. Research 4, 033083 (2022) - Published 29 July, 2022
Zhihua Deng, Xiujuan Zhang, Dingshan Gao, Ming-Hui Lu, and Xinliang Zhang
Phys. Rev. Research 4, 033084 (2022) - Published 29 July, 2022
S. Maegochi, K. Ienaga, and S. Okuma
Phys. Rev. Research 4, 033085 (2022) - Published 29 July, 2022
Gaute Linga, Luiza Angheluta, and Joachim Mathiesen
Phys. Rev. Research 4, 033086 (2022) - Published 29 July, 2022
Thorsten Haase, Gernot Alber, and Vladimir M. Stojanović
Phys. Rev. Research 4, 033087 (2022) - Published 29 July, 2022
Alfonso Maiellaro, Antonio Marino, and Fabrizio Illuminati
Phys. Rev. Research 4, 033088 (2022) - Published 29 July, 2022
Francesco Fumarola, Zhengqi He, Łukasz Kuśmierz, and Taro Toyoizumi
Phys. Rev. Research 4, 033089 (2022) - Published 1 August, 2022
The authors use data from free recall experiments to infer the statistics of unreported recalls and identify post-retrieval processes.
Mikhail Katkov and Misha Tsodyks
Phys. Rev. Research 4, 033090 (2022) - Published 1 August, 2022
Memory recall is highly variable, with the number of recalled words widely different across people and trials. Analyzing distributions of recall performance provides a way to access the validity of theoretical models.
Shintaro Minagawa, Hayato Arai, and Francesco Buscemi
Phys. Rev. Research 4, 033091 (2022) - Published 1 August, 2022
Kianna Wan and Robert Lasenby
Phys. Rev. Research 4, 033092 (2022) - Published 1 August, 2022
Zan Cao, Zhenyu Xu, and Adolfo del Campo
Phys. Rev. Research 4, 033093 (2022) - Published 1 August, 2022
Youngkyoung Bae, Dong-Kyum Kim, and Hawoong Jeong
Phys. Rev. Research 4, 033094 (2022) - Published 1 August, 2022
Ke Hu and Longqing Yi
Phys. Rev. Research 4, 033095 (2022) - Published 2 August, 2022
Chanania Steinbock, Eytan Katzav, and Arezki Boudaoud
Phys. Rev. Research 4, 033096 (2022) - Published 2 August, 2022
Jakob Tómas Bullerjahn and Gerhard Hummer
Phys. Rev. Research 4, 033097 (2022) - Published 2 August, 2022
Girish Kulkarni, Jeremy Rioux, Boris Braverman, Maria V. Chekhova, and Robert W. Boyd
Phys. Rev. Research 4, 033098 (2022) - Published 3 August, 2022
Robert J. Webber and Michael Lindsey
Phys. Rev. Research 4, 033099 (2022) - Published 3 August, 2022
Takashi Tsuchimochi, Masaki Taii, Taisei Nishimaki, and Seiichiro L. Ten-no
Phys. Rev. Research 4, 033100 (2022) - Published 4 August, 2022
Ofer Neufeld, Wenwen Mao, Hannes Hübener, Nicolas Tancogne-Dejean, Shunsuke A. Sato, Umberto De Giovannini, and Angel Rubio
Phys. Rev. Research 4, 033101 (2022) - Published 4 August, 2022
Deng-Gao Lai, Wei Qin, Adam Miranowicz, and Franco Nori
Phys. Rev. Research 4, 033102 (2022) - Published 5 August, 2022
Bibek Bhandari and Andrew N. Jordan
Phys. Rev. Research 4, 033103 (2022) - Published 5 August, 2022
Snir Meiri and Efi Efrati
Phys. Rev. Research 4, 033104 (2022) - Published 8 August, 2022
Marzio Di Vece, Diego Garlaschelli, and Tiziano Squartini
Phys. Rev. Research 4, 033105 (2022) - Published 8 August, 2022
Kimberly Remund, Rico Pohle, Yutaka Akagi, Judit Romhányi, and Nic Shannon
Phys. Rev. Research 4, 033106 (2022) - Published 8 August, 2022
Benedikt Tissot, Michael Trupke, Philipp Koller, Thomas Astner, and Guido Burkard
Phys. Rev. Research 4, 033107 (2022) - Published 8 August, 2022
Daisuke Takegami, Laurent Nicolaï, Yuki Utsumi, Anna Meléndez-Sans, Daria A. Balatsky, Cariad-A. Knight, Connor Dalton, Shao-Lun Huang, Chi-Sheng Chen, Li Zhao, Alexander C. Komarek, Yen-Fa Liao, Ku-Ding Tsuei, Ján Minár, and Liu Hao Tjeng
Phys. Rev. Research 4, 033108 (2022) - Published 8 August, 2022
Orientation dependent hard x-ray photoelectron spectroscopy can make direct images of the orbitals making up the band structure. The imaging provides energy specific information in real-space and is calculation-free.
Wenyuan Deng, Tian Chen, and Xiangdong Zhang
Phys. Rev. Research 4, 033109 (2022) - Published 9 August, 2022
Kentaro Yamamoto, David Zsolt Manrique, Irfan T. Khan, Hideaki Sawada, and David Muñoz Ramo
Phys. Rev. Research 4, 033110 (2022) - Published 9 August, 2022
Chengkang Zhou, Meng-Yuan Li, Zheng Yan, Peng Ye, and Zi Yang Meng
Phys. Rev. Research 4, 033111 (2022) - Published 9 August, 2022
Deng-Gao Lai, Ye-Hong Chen, Wei Qin, Adam Miranowicz, and Franco Nori
Phys. Rev. Research 4, 033112 (2022) - Published 10 August, 2022
D. P. Higginson, J. Kim, G. M. Petrov, D. C. Swift, J. A. Cobble, D. L. Bleuel, J. A. Frenje, V. Yu. Glebov, C. Stoeckl, J. M. McNaney, and F. N. Beg
Phys. Rev. Research 4, 033113 (2022) - Published 10 August, 2022
Lucy Liu, Gary P. T. Choi, and L. Mahadevan
Phys. Rev. Research 4, 033114 (2022) - Published 10 August, 2022
Quasicrystalline patterns are used to design deployable kirigami structures, craft them with paper sheets, and study their topological, geometrical, and mechanical properties,
Yuting Tan (譚宇婷), Tianyu Zhang, Tao Zou, A. M. dos Santos, Jin Hu, Dao-Xin Yao (姚道新), Z. Q. Mao, Xianglin Ke, and Wei Ku (顧威)
Phys. Rev. Research 4, 033115 (2022) - Published 10 August, 2022
R. Holzinger, S. A. Oh, M. Reitz, H. Ritsch, and C. Genes
Phys. Rev. Research 4, 033116 (2022) - Published 11 August, 2022
Sam Patrick, August Geelmuyden, Sebastian Erne, Carlo F. Barenghi, and Silke Weinfurtner
Phys. Rev. Research 4, 033117 (2022) - Published 11 August, 2022
Bernhard Jobst, Adam Smith, and Frank Pollmann
Phys. Rev. Research 4, 033118 (2022) - Published 11 August, 2022
Jeannette De Marco, Luisa Tolle, Catalin-Mihai Halati, Ameneh Sheikhan, Andreas M. Läuchli, and Corinna Kollath
Phys. Rev. Research 4, 033119 (2022) - Published 11 August, 2022
Jad C. Halimeh, Lukas Homeier, Christian Schweizer, Monika Aidelsburger, Philipp Hauke, and Fabian Grusdt
Phys. Rev. Research 4, 033120 (2022) - Published 11 August, 2022
Taichi Kosugi, Yusuke Nishiya, Hirofumi Nishi, and Yu-ichiro Matsushita
Phys. Rev. Research 4, 033121 (2022) - Published 11 August, 2022
Faisal Alsallom, Loïc Herviou, Oleg V. Yazyev, and Marta Brzezińska
Phys. Rev. Research 4, 033122 (2022) - Published 11 August, 2022
Tsung-Han Yang, S. Kawamoto, Tomoya Higo, SuYin Grass Wang, M. B. Stone, Joerg Neuefeind, Jacob P. C. Ruff, A. M. Milinda Abeykoon, Yu-Sheng Chen, S. Nakatsuji, and K. W. Plumb
Phys. Rev. Research 4, 033123 (2022) - Published 11 August, 2022
Chitram Banerjee, Yakov Solomons, A. Nicholas Black, Giulia Marcucci, David Eger, Nir Davidson, Ofer Firstenberg, and Robert W. Boyd
Phys. Rev. Research 4, 033124 (2022) - Published 12 August, 2022
Hadrien Oliveri, Rijk de Rooij, Ellen Kuhl, and Alain Goriely
Phys. Rev. Research 4, 033125 (2022) - Published 12 August, 2022
Hongyi Zhou, Toshihiko Sasaki, and Masato Koashi
Phys. Rev. Research 4, 033126 (2022) - Published 12 August, 2022
S. Reich, S. Maoz, Y. Kaplan, H. Rappeport, N. Q. Balaban, and O. Agam
Phys. Rev. Research 4, 033127 (2022) - Published 15 August, 2022
Subekshya Bidari, Ahmed El Hady, Jacob D. Davidson, and Zachary P. Kilpatrick
Phys. Rev. Research 4, 033128 (2022) - Published 15 August, 2022
Masaki Ochi and Tatsuro Kawamoto
Phys. Rev. Research 4, 033129 (2022) - Published 16 August, 2022
N. A. Keepfer, I.-K. Liu, F. Dalfovo, and N. P. Proukakis
Phys. Rev. Research 4, 033130 (2022) - Published 16 August, 2022
Luca V. Delacrétaz, Yi-Hsien Du, Umang Mehta, and Dam Thanh Son
Phys. Rev. Research 4, 033131 (2022) - Published 17 August, 2022
S. Komineas and P. E. Roy
Phys. Rev. Research 4, 033132 (2022) - Published 18 August, 2022
W. Papawassiliou, J. P. Carvalho, H. J. Kim, C. Y. Kim, S. J. Yoo, J. B. Lee, S. Alhassan, S. Orfanidis, V. Psycharis, M. Karagianni, M. Fardis, N. Panopoulos, G. Papavassiliou, and A. J. Pell
Phys. Rev. Research 4, 033133 (2022) - Published 19 August, 2022
Jakub Dolezal and Robert L. Jack
Phys. Rev. Research 4, 033134 (2022) - Published 19 August, 2022
Takuro Eguchi, Shoki Nezu, Yu Naemura, and Koji Sekiguchi
Phys. Rev. Research 4, 033135 (2022) - Published 19 August, 2022
R. Fermin, N. M. A. Scheinowitz, J. Aarts, and K. Lahabi
Phys. Rev. Research 4, 033136 (2022) - Published 19 August, 2022
Ryohei Kobayashi
Phys. Rev. Research 4, 033137 (2022) - Published 19 August, 2022
Jun-Jie Zhang, Xin-Li Sheng, Shi Pu, Jian-Nan Chen, Guo-Liang Peng, Jian-Guo Wang, and Qun Wang
Phys. Rev. Research 4, 033138 (2022) - Published 22 August, 2022
Rodolfo Rodriguez, Shirash Regmi, Hantao Zhang, Wei Yuan, Pavlo Makushko, Eric A. Montoya, Ihor Veremchuk, René Hübner, Denys Makarov, Jing Shi, Ran Cheng, and Igor Barsukov
Phys. Rev. Research 4, 033139 (2022) - Published 22 August, 2022
Jean-Loup Ville, Alexis Morvan, Akel Hashim, Ravi K. Naik, Marie Lu, Bradley Mitchell, John-Mark Kreikebaum, Kevin P. O'Brien, Joel J. Wallman, Ian Hincks, Joseph Emerson, Ethan Smith, Ed Younis, Costin Iancu, David I. Santiago, and Irfan Siddiqi
Phys. Rev. Research 4, 033140 (2022) - Published 22 August, 2022
Yuki Minami and Gentaro Watanabe
Phys. Rev. Research 4, 033141 (2022) - Published 22 August, 2022
Taylor L. Patti, Jean Kossaifi, Anima Anandkumar, and Susanne F. Yelin
Phys. Rev. Research 4, 033142 (2022) - Published 22 August, 2022
Jhen-Dong Lin, Ching-Yu Huang, Neill Lambert, Guang-Yin Chen, Franco Nori, and Yueh-Nan Chen
Phys. Rev. Research 4, 033143 (2022) - Published 22 August, 2022
Isabella R. Graf and Benjamin B. Machta
Phys. Rev. Research 4, 033144 (2022) - Published 22 August, 2022
Zhaoyang Shan, Pabitra K. Biswas, Sudeep K. Ghosh, T. Tula, Adrian D. Hillier, Devashibhai Adroja, Stephen Cottrell, Guang-Han Cao, Yi Liu, Xiaofeng Xu, Yu Song, Huiqiu Yuan, and Michael Smidman
Phys. Rev. Research 4, 033145 (2022) - Published 23 August, 2022
Prashant Kumar, P. A. Nosov, and S. Raghu
Phys. Rev. Research 4, 033146 (2022) - Published 24 August, 2022
Xiaopeng Wang, Siyu Gao, Mingwen Zhao, and Noa Marom
Phys. Rev. Research 4, 033147 (2022) - Published 24 August, 2022
M. Gen, H. Ishikawa, A. Ikeda, A. Miyake, Z. Yang, Y. Okamoto, M. Mori, K. Takenaka, H. Sagayama, T. Kurumaji, Y. Tokunaga, T. Arima, M. Tokunaga, K. Kindo, Y. H. Matsuda, and Y. Kohama
Phys. Rev. Research 4, 033148 (2022) - Published 25 August, 2022
Kevin C. Cox, Przemyslaw Bienias, David H. Meyer, Donald P. Fahey, Paul D. Kunz, and Alexey V. Gorshkov
Phys. Rev. Research 4, 033149 (2022) - Published 26 August, 2022
Koichi Miyamoto, Gonzalo Morrás, Takahiro S. Yamamoto, Sachiko Kuroyanagi, and Savvas Nesseris
Phys. Rev. Research 4, 033150 (2022) - Published 26 August, 2022
Yu-Wei Huang and Wei-Min Zhang
Phys. Rev. Research 4, 033151 (2022) - Published 26 August, 2022
Rikuya Ishikawa, Marie Tani, and Rei Kurita
Phys. Rev. Research 4, 033152 (2022) - Published 26 August, 2022
Au-Chen Lee, D. Baillie, and P. B. Blakie
Phys. Rev. Research 4, 033153 (2022) - Published 26 August, 2022
Jérôme F. Gonthier, Maxwell D. Radin, Corneliu Buda, Eric J. Doskocil, Clena M. Abuan, and Jhonathan Romero
Phys. Rev. Research 4, 033154 (2022) - Published 26 August, 2022
Naoko Nakagawa and Shin-ichi Sasa
Phys. Rev. Research 4, 033155 (2022) - Published 29 August, 2022
Jintao Li, Simon K. Schnyder, Matthew S. Turner, and Ryoichi Yamamoto
Phys. Rev. Research 4, 033156 (2022) - Published 29 August, 2022
Kota Mitsumoto, Chisa Hotta, and Hajime Yoshino
Phys. Rev. Research 4, 033157 (2022) - Published 29 August, 2022
Guillaume Salbreux, Frank Jülicher, Jacques Prost, and Andrew Callan-Jones
Phys. Rev. Research 4, 033158 (2022) - Published 29 August, 2022
Anjana M. Samarakoon, André Sokolowski, Bastian Klemke, Ralf Feyerherm, Michael Meissner, R. A. Borzi, Feng Ye, Qiang Zhang, Zhiling Dun, Haidong Zhou, T. Egami, Jonathan N. Hallén, Ludovic Jaubert, Claudio Castelnovo, Roderich Moessner, S. A. Grigera, and D. Alan Tennant
Phys. Rev. Research 4, 033159 (2022) - Published 29 August, 2022
Robert Schade, Carsten Bauer, Konstantin Tamoev, Lukas Mazur, Christian Plessl, and Thomas D. Kühne
Phys. Rev. Research 4, 033160 (2022) - Published 29 August, 2022
Mayan Si, Ankit Izardar, and Claude Ederer
Phys. Rev. Research 4, 033161 (2022) - Published 29 August, 2022
Konstantin Tiurev and Anders S. Sørensen
Phys. Rev. Research 4, 033162 (2022) - Published 29 August, 2022
M. Ivanov, D. Gomez, K. Hannikainen, Y. R. Niu, and J. Pereiro
Phys. Rev. Research 4, 033163 (2022) - Published 29 August, 2022
Cheng Dai, Maijia Liao, Xiaolin Li, Shuyu Chen, Ping Gao, and Ping Sheng
Phys. Rev. Research 4, 033164 (2022) - Published 29 August, 2022
Zhanhang Du and Jun Mei
Phys. Rev. Research 4, 033165 (2022) - Published 29 August, 2022
Maximilian Nägele, Christian Schweizer, Federico Roy, and Stefan Filipp
Phys. Rev. Research 4, 033166 (2022) - Published 30 August, 2022
Bastian Zinkl, Keita Hamamoto, and Manfred Sigrist
Phys. Rev. Research 4, 033167 (2022) - Published 29 August, 2022
Eric Brillaux, David Carpentier, Andrei A. Fedorenko, and Lucile Savary
Phys. Rev. Research 4, 033168 (2022) - Published 30 August, 2022
Hyunsoo Kim, Junhyun Lee, Halyna Hodovanets, Kefeng Wang, Jay D. Sau, and Johnpierre Paglione
Phys. Rev. Research 4, 033169 (2022) - Published 30 August, 2022
Tiantian Zhang, Daisuke Hara, and Shuichi Murakami
Phys. Rev. Research 4, 033170 (2022) - Published 31 August, 2022
Inseo Kim, Hyungwoo Lee, Ho-Hyun Nahm, and Minseok Choi
Phys. Rev. Research 4, 033171 (2022) - Published 31 August, 2022
Qi Sheng, Tatsuya Kaneko, Kohtaro Yamakawa, Zurab Guguchia, Zizhou Gong, Guoqiang Zhao, Guangyang Dai, Changqing Jin, Shengli Guo, Licheng Fu, Yilun Gu, Fanlong Ning, Yipeng Cai, Kenji M. Kojima, James Beare, Graeme M. Luke, Shigeki Miyasaka, Masato Matsuura, Shin-ichi Shamoto, Takashi Ito, Wataru Higemoto, Andrea Gauzzi, Yannik Klein, and Yasutomo J. Uemura
Phys. Rev. Research 4, 033172 (2022) - Published 1 September, 2022
Masaya Kohda, Ryosuke Imai, Keita Kanno, Kosuke Mitarai, Wataru Mizukami, and Yuya O. Nakagawa
Phys. Rev. Research 4, 033173 (2022) - Published 2 September, 2022
Debasish Banerjee, Emilie Huffman, and Lukas Rammelmüller
Phys. Rev. Research 4, 033174 (2022) - Published 2 September, 2022
Kimara Naicker, Ilya Sinayskiy, and Francesco Petruccione
Phys. Rev. Research 4, 033175 (2022) - Published 6 September, 2022
Philipp Pfeffer, Florian Heyder, and Jörg Schumacher
Phys. Rev. Research 4, 033176 (2022) - Published 6 September, 2022
Jan Košata, Anina Leuch, Tobias Kästli, and Oded Zilberberg
Phys. Rev. Research 4, 033177 (2022) - Published 6 September, 2022
A. Pineau, K. R. P. Kafka, S. G. Demos, T. Z. Kosc, V. N. Goncharov, S. X. Hu, and G. Duchateau
Phys. Rev. Research 4, 033178 (2022) - Published 6 September, 2022
Jan Wiersig
Phys. Rev. Research 4, 033179 (2022) - Published 6 September, 2022
Chetan Sriram Madasu, Mehedi Hasan, Ketan Damji Rathod, Chang Chi Kwong, and David Wilkowski
Phys. Rev. Research 4, 033180 (2022) - Published 6 September, 2022
Robin Schäfer, Jan C. Budich, and David J. Luitz
Phys. Rev. Research 4, 033181 (2022) - Published 6 September, 2022
T. Machida, Y. Nagai, and T. Hanaguri
Phys. Rev. Research 4, 033182 (2022) - Published 6 September, 2022
David Hochberg, Thomas Buhse, Jean-Claude Micheau, and Josep M. Ribó
Phys. Rev. Research 4, 033183 (2022) - Published 6 September, 2022
Anna Sidorenko, Zlata Fedorova (Cherpakova), Aya Abouelela, Johann Kroha, and Stefan Linden
Phys. Rev. Research 4, 033184 (2022) - Published 6 September, 2022
Giulia Bertagnolli and Manlio De Domenico
Phys. Rev. Research 4, 033185 (2022) - Published 6 September, 2022
Stephen Angus, Minkyoo Kim, and Jeong-Hyuck Park
Phys. Rev. Research 4, 033186 (2022) - Published 6 September, 2022
Daniel Hickox-Young, Geneva Laurita, Quintin N. Meier, Daniel Olds, Nicola A. Spaldin, Michael R. Norman, and James M. Rondinelli
Phys. Rev. Research 4, 033187 (2022) - Published 6 September, 2022
Daegwang Choi, Min Park, Chan-Young Sung, Hyoungsoon Choi, and Yong-Hoon Cho
Phys. Rev. Research 4, 033188 (2022) - Published 6 September, 2022
Francois Jamet, Cedric Weber, Swagata Acharya, Dimitar Pashov, and Mark van Schilfgaarde
Phys. Rev. Research 4, 033189 (2022) - Published 7 September, 2022
Marek Pechal, Federico Roy, Samuel A. Wilkinson, Gian Salis, Max Werninghaus, Michael J. Hartmann, and Stefan Filipp
Phys. Rev. Research 4, 033190 (2022) - Published 8 September, 2022
Yuki Sughiyama, Atsushi Kamimura, Dimitri Loutchko, and Tetsuya J. Kobayashi
Phys. Rev. Research 4, 033191 (2022) - Published 9 September, 2022
E. P. Alves and F. Fiuza
Phys. Rev. Research 4, 033192 (2022) - Published 9 September, 2022
Jiayin Gu, Fan Zhang, and H. T. Quan
Phys. Rev. Research 4, 033193 (2022) - Published 12 September, 2022
Shujie Cheng and Gao Xianlong
Phys. Rev. Research 4, 033194 (2022) - Published 12 September, 2022
R. D. H. Hinlopen, F. A. Hinlopen, J. Ayres, and N. E. Hussey
Phys. Rev. Research 4, 033195 (2022) - Published 12 September, 2022
Pablo Villegas, Andrea Gabrielli, Francesca Santucci, Guido Caldarelli, and Tommaso Gili
Phys. Rev. Research 4, 033196 (2022) - Published 12 September, 2022
Andrey Gelash, Gang Xu, and Bertrand Kibler
Phys. Rev. Research 4, 033197 (2022) - Published 12 September, 2022
Gabriele Naselli, Ali G. Moghaddam, Solange Di Napoli, Verónica Vildosola, Ion Cosma Fulga, Jeroen van den Brink, and Jorge I. Facio
Phys. Rev. Research 4, 033198 (2022) - Published 12 September, 2022
Victor Helson, Timo Zwettler, Kevin Roux, Hideki Konishi, Shun Uchino, and Jean-Philippe Brantut
Phys. Rev. Research 4, 033199 (2022) - Published 12 September, 2022
K. E. Ballantine and J. Ruostekoski
Phys. Rev. Research 4, 033200 (2022) - Published 12 September, 2022
Viktoriia Kornich and Björn Trauzettel
Phys. Rev. Research 4, 033201 (2022) - Published 12 September, 2022
Xingen Zheng, Tian Chen, Weixuan Zhang, Houjun Sun, and Xiangdong Zhang
Phys. Rev. Research 4, 033203 (2022) - Published 12 September, 2022
Tara N. Tošić, Quintin N. Meier, and Nicola A. Spaldin
Phys. Rev. Research 4, 033204 (2022) - Published 13 September, 2022
K. Xhani and N. P. Proukakis
Phys. Rev. Research 4, 033205 (2022) - Published 13 September, 2022
Laleh Memarzadeh and Barry C. Sanders
Phys. Rev. Research 4, 033206 (2022) - Published 13 September, 2022
Sangkha Borah, Bijita Sarma, Michael Kewming, Fernando Quijandría, Gerard J. Milburn, and Jason Twamley
Phys. Rev. Research 4, 033207 (2022) - Published 14 September, 2022
Tetsuya J. Kobayashi, Dimitri Loutchko, Atsushi Kamimura, and Yuki Sughiyama
Phys. Rev. Research 4, 033208 (2022) - Published 15 September, 2022
Lang Zeng, Ying-Qi Zeng, Ming Tang, Ying Liu, Zonghua Liu, and Ying-Cheng Lai
Phys. Rev. Research 4, 033209 (2022) - Published 16 September, 2022
Theo Torres, Max Lloyd, Sam R. Dolan, and Silke Weinfurtner
Phys. Rev. Research 4, 033210 (2022) - Published 19 September, 2022
Andrea Amoretti, Daniel K. Brattan, Nicodemo Magnoli, Luca Martinoia, Ioannis Matthaiakakis, and Paolo Solinas
Phys. Rev. Research 4, 033211 (2022) - Published 19 September, 2022
Luca Lepori, Simone Paganelli, Fabio Franchini, and Andrea Trombettoni
Phys. Rev. Research 4, 033212 (2022) - Published 19 September, 2022
Alberto Castro, Umberto De Giovannini, Shunsuke A. Sato, Hannes Hübener, and Angel Rubio
Phys. Rev. Research 4, 033213 (2022) - Published 19 September, 2022
H. Kamata, H. Irie, N. Kumada, and K. Muraki
Phys. Rev. Research 4, 033214 (2022) - Published 19 September, 2022
Yoshinori Ohmasa, Shigeyuki Takagi, Kento Toshima, Kaito Yokoyama, Wataru Endo, Shin-ichi Orimo, Hiroyuki Saitoh, Takeshi Yamada, Yukinobu Kawakita, Kazutaka Ikeda, Toshiya Otomo, Hiroshi Akiba, and Osamu Yamamuro
Phys. Rev. Research 4, 033215 (2022) - Published 19 September, 2022
Alba Crescente, Dario Ferraro, Matteo Carrega, and Maura Sassetti
Phys. Rev. Research 4, 033216 (2022) - Published 19 September, 2022
Maurice Weber, Abhinav Anand, Alba Cervera-Lierta, Jakob S. Kottmann, Thi Ha Kyaw, Bo Li, Alán Aspuru-Guzik, Ce Zhang, and Zhikuan Zhao
Phys. Rev. Research 4, 033217 (2022) - Published 19 September, 2022
Peter Kratzer, Laurenz Rettig, Irina Yu. Sklyadneva, Evgueni V. Chulkov, and Uwe Bovensiepen
Phys. Rev. Research 4, 033218 (2022) - Published 19 September, 2022
H. C. Prates, D. A. Zezyulin, and V. V. Konotop
Phys. Rev. Research 4, 033219 (2022) - Published 19 September, 2022
H. Laurell, D. Finkelstein-Shapiro, C. Dittel, C. Guo, R. Demjaha, M. Ammitzböll, R. Weissenbilder, L. Neoričić, S. Luo, M. Gisselbrecht, C. L. Arnold, A. Buchleitner, T. Pullerits, A. L'Huillier, and D. Busto
Phys. Rev. Research 4, 033220 (2022) - Published 19 September, 2022
Daniel Pister, Kilian Irländer, Dennis Westerbeck, and Jürgen Schnack
Phys. Rev. Research 4, 033221 (2022) - Published 19 September, 2022
Jun Gao, Ze-Sheng Xu, Daria A. Smirnova, Daniel Leykam, Samuel Gyger, Wen-Hao Zhou, Stephan Steinhauer, Val Zwiller, and Ali W. Elshaari
Phys. Rev. Research 4, 033222 (2022) - Published 19 September, 2022
Rouven Koch and Jose L. Lado
Phys. Rev. Research 4, 033223 (2022) - Published 19 September, 2022
Pierre A. Haas, Maria A. Gutierrez, Nuno M. Oliveira, and Raymond E. Goldstein
Phys. Rev. Research 4, 033224 (2022) - Published 19 September, 2022
Mohammad Samani, Christian P. Scheller, Omid Sharifi Sedeh, Dominik M. Zumbühl, Nikolai Yurttagül, Kestutis Grigoras, David Gunnarsson, Mika Prunnila, Alexander T. Jones, Jonathan R. Prance, and Richard P. Haley
Phys. Rev. Research 4, 033225 (2022) - Published 19 September, 2022
L. Simonson, S. K. Ozdemir, A. Eisfeld, A. Metelmann, and R. El-Ganainy
Phys. Rev. Research 4, 033226 (2022) - Published 19 September, 2022
The quantum noise in exceptional points-based optical amplifiers does not scale universally with the order of the exceptional point but rather can vary from one implementation to another.
Yu-Hang Li and Ran Cheng
Phys. Rev. Research 4, 033227 (2022) - Published 20 September, 2022
Tatiana Konstantinova, Lutz Wiegart, Maksim Rakitin, Anthony M. DeGennaro, and Andi M. Barbour
Phys. Rev. Research 4, 033228 (2022) - Published 21 September, 2022
S. Sels, F. M. Maier, M. Au, P. Fischer, C. Kanitz, V. Lagaki, S. Lechner, E. Leistenschneider, D. Leimbach, E. M. Lykiardopoulou, A. A. Kwiatkowski, T. Manovitz, Y. N. Vila Gracia, G. Neyens, P. Plattner, S. Rothe, L. Schweikhard, M. Vilen, R. N. Wolf, and S. Malbrunot-Ettenauer
Phys. Rev. Research 4, 033229 (2022) - Published 23 September, 2022
Miguel A. López-Castaño, Alejandro Márquez Seco, Alicia Márquez Seco, Álvaro Rodríguez-Rivas, and Francisco Vega Reyes
Phys. Rev. Research 4, 033230 (2022) - Published 23 September, 2022
E. V. Gryzlova et al.
Phys. Rev. Research 4, 033231 (2022) - Published 23 September, 2022
Sourav Majumder, Tanmoy Bera, and Vibhor Singh
Phys. Rev. Research 4, 033232 (2022) - Published 23 September, 2022
Fabio Cavaliere, Matteo Carrega, Giulio De Filippis, Vittorio Cataudella, Giuliano Benenti, and Maura Sassetti
Phys. Rev. Research 4, 033233 (2022) - Published 23 September, 2022
Connor Roberts and Gunnar Pruessner
Phys. Rev. Research 4, 033234 (2022) - Published 23 September, 2022
Huading Song, Zitong Zhang, Dong Pan, Donghao Liu, Zhaoyu Wang, Zhan Cao, Lei Liu, Lianjun Wen, Dunyuan Liao, Ran Zhuo, Dong E. Liu, Runan Shang, Jianhua Zhao, and Hao Zhang
Phys. Rev. Research 4, 033235 (2022) - Published 23 September, 2022
Viktor Könye, Corentin Morice, Dmitry Chernyavsky, Ali G. Moghaddam, Jeroen van den Brink, and Jasper van Wezel
Phys. Rev. Research 4, 033237 (2022) - Published 26 September, 2022
Markus Wallerberger and Karsten Held
Phys. Rev. Research 4, 033238 (2022) - Published 26 September, 2022
Florian Denizer, Yasin Beyazit, Björn Sothmann, J. Jayabalan, Detlef Diesing, Ping Zhou, and Uwe Bovensiepen
Phys. Rev. Research 4, 033239 (2022) - Published 26 September, 2022
S. Gravina, C. Clivati, A. Castrillo, E. Fasci, N. A. Chishti, G. Galzerano, F. Levi, and L. Gianfrani
Phys. Rev. Research 4, 033240 (2022) - Published 26 September, 2022
Shiro Sakai, Ryotaro Arita, and Tomi Ohtsuki
Phys. Rev. Research 4, 033241 (2022) - Published 26 September, 2022
K. E. Ballantine, D. Wilkowski, and J. Ruostekoski
Phys. Rev. Research 4, 033242 (2022) - Published 27 September, 2022
Cai Dieball and Aljaž Godec
Phys. Rev. Research 4, 033243 (2022) - Published 29 September, 2022
Abdelali Sajia and Xiao-Feng Qian
Phys. Rev. Research 4, 033244 (2022) - Published 29 September, 2022
Alto Osada, Kento Taniguchi, Masato Shigefuji, and Atsushi Noguchi
Phys. Rev. Research 4, 033245 (2022) - Published 29 September, 2022
R. Monsarrat, R. Pierrat, A. Tourin, and A. Goetschy
Phys. Rev. Research 4, 033246 (2022) - Published 29 September, 2022
Mingnan Ding and Xiangjun Xing
Phys. Rev. Research 4, 033247 (2022) - Published 29 September, 2022
K. V. Lezhnin and S. V. Bulanov
Phys. Rev. Research 4, 033248 (2022) - Published 29 September, 2022
Max Lipton, Alex Townsend, and Steven H. Strogatz
Phys. Rev. Research 4, 033249 (2022) - Published 30 September, 2022
The electrostatic equilibrium points and equipotential surfaces around uniformly charged loops in the plane and knots in three dimensions is studied. Findings include symmetry-breaking bifurcations as well as topological transitions as the shape of the charge distribution or the level of the potential are varied.
Norifumi Matsumoto, Masaya Nakagawa, and Masahito Ueda
Phys. Rev. Research 4, 033250 (2022) - Published 30 September, 2022
Christian Boudreault, Clément Berthiere, and William Witczak-Krempa
Phys. Rev. Research 4, 033251 (2022) - Published 30 September, 2022
Andres Vega, Elkin A. Santos, Jorge Fuenzalida, Marta Gilaberte Basset, Thomas Pertsch, Markus Gräfe, Sina Saravi, and Frank Setzpfandt
Phys. Rev. Research 4, 033252 (2022) - Published 30 September, 2022
Matthias Pickem, Jan M. Tomczak, and Karsten Held
Phys. Rev. Research 4, 033253 (2022) - Published 30 September, 2022
Enrique G. Neyra, Demian A. Biasetti, Fabián Videla, Lorena Rebón, and Marcelo F. Ciappina
Phys. Rev. Research 4, 033254 (2022) - Published 30 September, 2022
Gérard Gouesbet
Phys. Rev. Research 4, 038001 (2022) - Published 11 July, 2022
Anita Devi and Arijit K. De
Phys. Rev. Research 4, 038002 (2022) - Published 11 July, 2022