Recent Articles

Quantum Entanglement between Optical and Microwave Photonic Qubits

Srujan Meesala, David Lake, Steven Wood, Piero Chiappina, Changchun Zhong, Andrew D. Beyer, Matthew D. Shaw, Liang Jiang, and Oskar Painter

Phys. Rev. X 14, 031055 (2024) - Published 30 September, 2024

Entangled photons with an extreme separation in energy provide a means for engineering a quantum interconnect between light and superconducting microwave devices.

Geometric Landscape Annealing as an Optimization Principle Underlying the Coherent Ising Machine

Atsushi Yamamura, Hideo Mabuchi, and Surya Ganguli

Phys. Rev. X 14, 031054 (2024) - Published 27 September, 2024

A theoretical analysis of a type of optical oscillator network sheds light on how unconventional computing architectures go about finding the best solution to a complex problem among many possibilities.

Theory of Stimulated Brillouin Scattering in Fibers for Highly Multimode Excitations

Kabish Wisal, Stephen C. Warren-Smith, Chun-Wei Chen, Hui Cao, and A. Douglas Stone

Phys. Rev. X 14, 031053 (2024) - Published 26 September, 2024

Theoretical work confirms that multimode excitation of optical fibers is an effective way to suppress stimulated Brillouin scattering, an often-unwanted loss mechanism in both active and passive fibers.

Theoretical Description of Pump-Probe Experiments in Charge-Density-Wave Materials out to Long Times

Marko D. Petrović, Manuel Weber, and James K. Freericks

Phys. Rev. X 14, 031052 (2024) - Published 25 September, 2024

A simulation of pump-probe experiments out to several picoseconds provides insight into previously observed lattice vibration behaviors in a system where those vibrations interact with electrons.

Exploring the Strong Interaction of Three-Body Systems at the LHC

S. Acharya et al. (ALICE Collaboration)

Phys. Rev. X 14, 031051 (2024) - Published 24 September, 2024

Momentum correlations between deuterons and either kaons or protons in Large Hadron Collider data provide a window into studying the dynamics and forces of three-body nuclear systems with precision.

Spontaneous Brain Activity Emerges from Pairwise Interactions in the Larval Zebrafish Brain

Richard E. Rosch, Dominic R. W. Burrows, Christopher W. Lynn, and Arian Ashourvan

Phys. Rev. X 14, 031050 (2024) - Published 23 September, 2024

A simple statistical model capturing only pairwise interactions between brain regions is sufficient to reproduce key features of whole-brain dynamics.

Dynamics of Active Defects on the Anisotropic Surface of an Ellipsoidal Droplet

Martina Clairand, Ali Mozaffari, Jerôme Hardoüin, Rui Zhang, Claire Doré, Jordi Ignés-Mullol, Francesc Sagués, Juan J. de Pablo, and Teresa Lopez-Leon

Phys. Rev. X 14, 031049 (2024) - Published 20 September, 2024

Active fluids host dynamic, chaotic flows that are difficult to control. Depositing an active fluid on an ellipsoidal droplet provides a means for regulating those flows.

Statistics of Matrix Elements of Local Operators in Integrable Models

F. H. L. Essler and A. J. J. M. de Klerk

Phys. Rev. X 14, 031048 (2024) - Published 17 September, 2024

The eigenstate thermalization hypothesis (ETH) is key to understanding statistical mechanics in nonequilibrium quantum systems but doesn’t apply when many quantities are conserved. A new analysis explores what takes the place of ETH in such systems.

Anderson Localization of Walking Droplets

Abel J. Abraham, Stepan Malkov, Frane A. Ljubetic, Matthew Durey, and Pedro J. Sáenz

Phys. Rev. X 14, 031047 (2024) - Published 17 September, 2024

Millimeter-sized droplets on a vibrating fluid surface can localize in disordered environments much like electrons do, showcasing a unique system for exploring the boundary between classical and quantum realms.

Characterization and Exploitation of the Rotational Memory Effect in Multimode Fibers

Rodrigo Gutiérrez-Cuevas, Arthur Goetschy, Yaron Bromberg, Guy Pelc, Esben Ravn Andresen, Laurent Bigot, Yves Quiquempois, Maroun Bsaibes, Pierre Sillard, Marianne Bigot, Ori Katz, Julien de Rosny, and Sébastien M. Popoff

Phys. Rev. X 14, 031046 (2024) - Published 16 September, 2024

In an ideal optical fiber, rotating the input cleanly rotates the output. That’s not the case in real fibers, thanks to imperfections. Characterization of this effect, however, leads to new practical applications.

Dynamical Correlations and Order in Magic-Angle Twisted Bilayer Graphene

Gautam Rai, Lorenzo Crippa, Dumitru Călugăru, Haoyu Hu, Francesca Paoletti, Luca de’ Medici, Antoine Georges, B. Andrei Bernevig, Roser Valentí, Giorgio Sangiovanni, and Tim Wehling

Phys. Rev. X 14, 031045 (2024) - Published 11 September, 2024

New large-scale simulations of magic-angle twisted bilayer graphene explore how electron correlations and symmetry-breaking phase transitions affect the system’s phase diagram.

Mixed-State Quantum Phases: Renormalization and Quantum Error Correction

Shengqi Sang, Yijian Zou, and Timothy H. Hsieh

Phys. Rev. X 14, 031044 (2024) - Published 10 September, 2024

Real-space normalization group methods provide a new way to study phases of matter of quantum many-body mixed states.

Continuous Coherent Quantum Feedback with Time Delays: Tensor Network Solution

Kseniia Vodenkova and Hannes Pichler

Phys. Rev. X 14, 031043 (2024) - Published 9 September, 2024

A new method for solving notoriously difficult problems of delayed quantum feedback provides a handle for solving a new class of problems arising in the study of complex quantum networks.

Electric Field of DNA in Solution: Who Is in Charge?

Jonathan G. Hedley, Kush Coshic, Aleksei Aksimentiev, and Alexei A. Kornyshev

Phys. Rev. X 14, 031042 (2024) - Published 5 September, 2024

A theoretical analysis of the complex electric field around DNA uncovers the origin of oscillating field patterns and sheds light on the role of the solvent that surrounds the DNA.

How to Measure the Controllability of an Infectious Disease?

Kris V. Parag

Phys. Rev. X 14, 031041 (2024) - Published 4 September, 2024

A new model of epidemics describes infections as part of a feedback loop—an approach that might one day help optimize interventions such as social distancing and lockdowns.

Observation of Pairwise Level Degeneracies and the Quantum Regime of the Arrhenius Law in a Double-Well Parametric Oscillator

Nicholas E. Frattini, Rodrigo G. Cortiñas, Jayameenakshi Venkatraman, Xu Xiao, Qile Su, Chan U. Lei, Benjamin J. Chapman, Vidul R. Joshi, S. M. Girvin, Robert J. Schoelkopf, Shruti Puri, and Michel H. Devoret

Phys. Rev. X 14, 031040 (2024) - Published 3 September, 2024

The observation of quantum modifications to a well-known chemical law could lead to performance improvements for quantum information storage.

Enumeration of Spin-Space Groups: Toward a Complete Description of Symmetries of Magnetic Orders

Yi Jiang, Ziyin Song, Tiannian Zhu, Zhong Fang, Hongming Weng, Zheng-Xin Liu, Jian Yang, and Chen Fang

Phys. Rev. X 14, 031039 (2024) - Published 28 August, 2024

An extensive database of over 157 000 spin space groups provides researchers with a searchable tool for exploring the symmetries of a wide variety of magnetic materials.

Enumeration and Representation Theory of Spin Space Groups

Xiaobing Chen, Jun Ren, Yanzhou Zhu, Yutong Yu, Ao Zhang, Pengfei Liu, Jiayu Li, Yuntian Liu, Caiheng Li, and Qihang Liu

Phys. Rev. X 14, 031038 (2024) - Published 28 August, 2024

A systematic study of over 100 000 spin space groups provides a foundational theory for symmetry in magnetic ordered materials that opens new paths for the fundamental comprehension and the exploration of emergent phenomena in such systems.

Spin Space Groups: Full Classification and Applications

Zhenyu Xiao, Jianzhou Zhao, Yanqi Li, Ryuichi Shindou, and Zhi-Da Song

Phys. Rev. X 14, 031037 (2024) - Published 28 August, 2024

A comprehensive classification of spin space groups, a hidden symmetry of magnetic materials, paves the way for a more complete understanding of magnetic phases and the design of novel materials.

Erratum: Josephson-Anderson Relation and the Classical D’Alembert Paradox [Phys. Rev. X 11, 031054 (2021)]

Gregory L. Eyink

Phys. Rev. X 14, 039901 (2024) - Published 27 August, 2024

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