Randall D. Kamien and Daniel Ucko
Phys. Rev. D 109, 100001 (2024) - Published 21 May, 2024
Géraldine Servant and Peera Simakachorn
Phys. Rev. D 109, 103538 (2024) - Published 23 May, 2024
Spacetime wrinkles known as cosmic strings, which might have formed in the early Universe, could be a dominant source of gravitational waves at ultrahigh frequencies, according to new calculations.
Djuna Croon and Jeremy Sakstein
Phys. Rev. D 109, 103021 (2024) - Published 14 May, 2024
The authors study the effect of annihilating dark matter on massive stars suffering from pair-instability. The annihilation of dark matter inserts energy into the star and the authors show that for sufficient dark matter density, significant changes occur in the masses of the resulting black holes. For dark matter masses greater than 1 GeV, most of the dark matter is in the core which leads to a more violent explosion, resulting in a lighter black hole, while for masses less than .5 GeV, most of the dark matter is in the envelope, supporting the star through energy release, causing a less violent explosion and a more massive black hole.
Cong Zhou, Lei Huang, Kangrou Guo, Ya-Ping Li, and Zhen Pan
Phys. Rev. D 109, 103031 (2024) - Published 20 May, 2024
The paper successfully models X-ray observational aspects of Quasi-Periodic Eruptions (QPEs) in galactic nuclei as due to collisions between a Tidal Disruption Event (TDE) accretion disk and a stellar mass black hole or main sequence star orbiting around a nuclear supermassive black hole (SMBH). This can have key implications in understanding EMRIs and stellar orbits in the vicinity of SMBHs.
Jiamin Hou, Azadeh Moradinezhad Dizgah, ChangHoon Hahn, Michael Eickenberg, Shirley Ho, Pablo Lemos, Elena Massara, Chirag Modi, Liam Parker, and Bruno Régaldo-Saint Blancard
Phys. Rev. D 109, 103528 (2024) - Published 17 May, 2024
The paper presents the first cosmological constraints from SDSS-III Baryon Oscillation Spectroscopic Survey (BOSS) redshift-space galaxy skew spectra. This work goes beyond two-point statistics, accesses cosmological information down to nonlinear scales, and uses the Simulation-Based Inference of Galaxies (SIMBIG) forward modeling framework to improve constraints for several cosmological parameters up to 38%.
Aleksey Cherman and Maria Neuzil
Phys. Rev. D 109, 105014 (2024) - Published 10 May, 2024
The authors discuss QCD with adjoint massless fermions and its deformation by the two (classically) marginal four-fermion operators, only one of which respects a noninvertible symmetry. They compute the functions of the two operators and discuss in detail their behavior in the IR, thereby clarifying some confusion in the literature stemming from different approaches, confinement behavior and treatment on the lattice. These are important results for this of confinement and lattice formulations.
Leonardo Rastelli and Brandon C. Rayhaun
Phys. Rev. D 109, 105018 (2024) - Published 13 May, 2024
The authors prove (under some mild assumptions) the conjecture about the rationality of the trace anomaly central charges and in = 2 superconformal theories. They work on the Higgs branch and use rigorous results from vertex operator algebras in their arguments. This closes some shortcomings of the Coulomb branch arguments and rigorously shows the generality of this intriguing property.
Jinwei Chu and Savan Kharel
Phys. Rev. D 109, 106003 (2024) - Published 2 May, 2024
In a series of two papers, the authors introduce a new method to compute the tree-level -gluon scattering amplitudes in anti-de Sitter spacetime (AdS) space within the AdS/CFT duality. Working with Mellin amplitudes, the authors propose Feynman rules and show that they take a similar form as those in flat space. This intriguing similarity led the authors to propose a novel dictionary: comprehensive rules that bridge AdS Mellin amplitudes with flat-space gluon amplitudes.
Emma Albertini, Fay Dowker, Arad Nasiri, and Stav Zalel
Phys. Rev. D 109, 106014 (2024) - Published 13 May, 2024
This paper deals with interacting quantum field theories on a causal set. Free theories on these sets have been copiously discussed but here, the authors develop perturbative expansions, in-in and in-out correlators and make a suggestion on how to define an S-matrix, a daunting task, given the absence of Cauchy surfaces in a causal set.
Jinwei Chu and Savan Kharel
Phys. Rev. D 109, L101901 (2024) - Published 2 May, 2024
In a series of two papers, the authors introduce a new method to compute the tree-level -gluon scattering amplitudes in anti-de Sitter spacetime (AdS) space within the AdS/CFT duality. Working with Mellin amplitudes, the authors propose Feynman rules and show that they take a similar form as those in flat space. This intriguing similarity led the authors to propose a novel dictionary: comprehensive rules that bridge AdS Mellin amplitudes with flat-space gluon amplitudes.
Ligong Bian, Shuailiang Ge, Jing Shu, Bo Wang, Xing-Yu Yang, and Junchao Zong
Phys. Rev. D 109, L101301 (2024) - Published 10 May, 2024
Zu-Cheng Chen, Jun Li, Lang Liu, and Zhu Yi
Phys. Rev. D 109, L101302 (2024) - Published 10 May, 2024
Hiroki Matsui, Alexandros Papageorgiou, Fuminobu Takahashi, and Takahiro Terada
Phys. Rev. D 109, L101303 (2024) - Published 14 May, 2024
Bo-Qiang Lu, Cheng-Wei Chiang, and Tianjun Li
Phys. Rev. D 109, L101304 (2024) - Published 16 May, 2024
Pedro De la Torre Luque, Shyam Balaji, and Pierluca Carenza
Phys. Rev. D 109, L101305 (2024) - Published 17 May, 2024
Rostom Mbarek, Alexander Philippov, Alexander Chernoglazov, Amir Levinson, and Richard Mushotzky
Phys. Rev. D 109, L101306 (2024) - Published 24 May, 2024
Ankit Kumar, Yen-Kheng Lim, P. Arumugam, Tom Złośnik, and Tomasz Paterek
Phys. Rev. D 109, L101501 (2024) - Published 10 May, 2024
Reginald Christian Bernardo and Kin-Wang Ng
Phys. Rev. D 109, L101502 (2024) - Published 20 May, 2024
Jaime Redondo-Yuste, Gregorio Carullo, Justin L. Ripley, Emanuele Berti, and Vitor Cardoso
Phys. Rev. D 109, L101503 (2024) - Published 21 May, 2024
Jesse Daas, Cristobal Laporte, and Frank Saueressig
Phys. Rev. D 109, L101504 (2024) - Published 22 May, 2024
Walker Melton, Atul Sharma, and Andrew Strominger
Phys. Rev. D 109, L101701 (2024) - Published 20 May, 2024
Jinwei Chu and Savan Kharel
Phys. Rev. D 109, L101901 (2024) - Published 2 May, 2024
In a series of two papers, the authors introduce a new method to compute the tree-level -gluon scattering amplitudes in anti-de Sitter spacetime (AdS) space within the AdS/CFT duality. Working with Mellin amplitudes, the authors propose Feynman rules and show that they take a similar form as those in flat space. This intriguing similarity led the authors to propose a novel dictionary: comprehensive rules that bridge AdS Mellin amplitudes with flat-space gluon amplitudes.
Chris Akers, Thomas Faulkner, Simon Lin, and Pratik Rath
Phys. Rev. D 109, L101902 (2024) - Published 6 May, 2024
Bartłomiej Czech, Sirui Shuai, Yixu Wang, and Daiming Zhang
Phys. Rev. D 109, L101903 (2024) - Published 10 May, 2024
William D. Biggs and Jorge E. Santos
Phys. Rev. D 109, L101904 (2024) - Published 14 May, 2024
Jin Dong, Yao-Qi Zhang, and Yong Zhang
Phys. Rev. D 109, L101905 (2024) - Published 29 May, 2024
A. Abdul Halim et al. (The Pierre Auger Collaboration)
Phys. Rev. D 109, 102001 (2024) - Published 2 May, 2024
Kamiel Janssens, Guillaume Boileau, Nelson Christensen, Nick van Remortel, Francesca Badaracco, Benjamin Canuel, Alessandro Cardini, Andrea Contu, Michael W. Coughlin, Jean-Baptiste Decitre, Rosario De Rosa, Matteo Di Giovanni, Domenico D’Urso, Stéphane Gaffet, Carlo Giunchi, Jan Harms, Soumen Koley, Valentina Mangano, Luca Naticchioni, Marco Olivieri, Federico Paoletti, Davide Rozza, Dylan O. Sabulsky, Shahar Shani-Kadmiel, and Lucia Trozzo
Phys. Rev. D 109, 102002 (2024) - Published 2 May, 2024
Sangin Kim, C. Y. Hui, Jianqi Yan, Alex P. Leung, Kwangmin Oh, A. K. H. Kong, L. C.-C. Lin, and Kwan-Lok Li
Phys. Rev. D 109, 102003 (2024) - Published 7 May, 2024
Federico De Santi, Massimiliano Razzano, Francesco Fidecaro, Luca Muccillo, Lucia Papalini, and Barbara Patricelli
Phys. Rev. D 109, 102004 (2024) - Published 7 May, 2024
H. Sakurai, Y. Kurebayashi, S. Suzuki, K. Horiuchi, Y. Takahashi, N. Doshita, S. Kikuchi, F. Tokanai, N. Iwata, Y. Tajima, S. Gunji, E. Inui, K. Kondo, T. Oe, N. Sasaki, S. Abe, T. Sato, H. Matsuzaki, and V. Vlachoudis
Phys. Rev. D 109, 102005 (2024) - Published 9 May, 2024
Vladimir Bossilkov, Jian Liu, Carl Blair, Chunnong Zhao, and Li Ju
Phys. Rev. D 109, 102006 (2024) - Published 10 May, 2024
Dong Wang, Xuefeng Zhang, Lihua Zhang, and Ming Li
Phys. Rev. D 109, 102007 (2024) - Published 13 May, 2024
Yukino Mori, Yota Nakayama, Kazuhiro Yamamoto, Takafumi Ushiba, Danièle Forest, Christophe Michel, Laurent Pinard, Julien Teillon, and Gianpietro Cagnoli
Phys. Rev. D 109, 102008 (2024) - Published 17 May, 2024
M. Armano et al. (LISA Pathfinder Collaboration)
Phys. Rev. D 109, 102009 (2024) - Published 22 May, 2024
Andrea Virtuoso and Edoardo Milotti
Phys. Rev. D 109, 102010 (2024) - Published 23 May, 2024
Roberta Calabrese, Marco Chianese, Jacob Gunn, Gennaro Miele, Stefano Morisi, and Ninetta Saviano
Phys. Rev. D 109, 103001 (2024) - Published 1 May, 2024
Kiwan Park, Yudong Luo, and Toshitaka Kajino
Phys. Rev. D 109, 103002 (2024) - Published 2 May, 2024
Bei Zhou and John F. Beacom
Phys. Rev. D 109, 103003 (2024) - Published 2 May, 2024
Zheng Wu, Yi-Ming Hu, Hui-Min Fan, and Ik Siong Heng
Phys. Rev. D 109, 103004 (2024) - Published 3 May, 2024
Hong-Yi Zhang, Ray Hagimoto, and Andrew J. Long
Phys. Rev. D 109, 103005 (2024) - Published 6 May, 2024
Jack Heinzel, Sylvia Biscoveanu, and Salvatore Vitale
Phys. Rev. D 109, 103006 (2024) - Published 7 May, 2024
Kimberly K. Boddy, Zachary J. Carter, Jason Kumar, Luis Rufino, Pearl Sandick, and Natalia Tapia-Arellano
Phys. Rev. D 109, 103007 (2024) - Published 7 May, 2024
Aviral Prakash, Ish Gupta, Matteo Breschi, Rahul Kashyap, David Radice, Sebastiano Bernuzzi, Domenico Logoteta, and B. S. Sathyaprakash
Phys. Rev. D 109, 103008 (2024) - Published 6 May, 2024
Chinami Kato, Hiroki Nagakura, and Lucas Johns
Phys. Rev. D 109, 103009 (2024) - Published 7 May, 2024
Matti Heikinheimo, Kai Nordlund, Sebastian Sassi, and Kimmo Tuominen
Phys. Rev. D 109, 103010 (2024) - Published 8 May, 2024
Shashank Shalgar and Irene Tamborra
Phys. Rev. D 109, 103011 (2024) - Published 8 May, 2024
Aaron D. Johnson et al. (NANOGrav Collaboration)
Phys. Rev. D 109, 103012 (2024) - Published 9 May, 2024
Federico De Lillo and Jishnu Suresh
Phys. Rev. D 109, 103013 (2024) - Published 9 May, 2024
Luke Major Krauth, Jordy Davelaar, Zoltán Haiman, John Ryan Westernacher-Schneider, Jonathan Zrake, and Andrew MacFadyen
Phys. Rev. D 109, 103014 (2024) - Published 10 May, 2024
Luigi Scurto, Helena Pais, and Francesca Gulminelli
Phys. Rev. D 109, 103015 (2024) - Published 10 May, 2024
Naoki Seto
Phys. Rev. D 109, 103016 (2024) - Published 13 May, 2024
Hiroki Nagakura and Kohsuke Sumiyoshi
Phys. Rev. D 109, 103017 (2024) - Published 13 May, 2024
Subhajit Dandapat, Abhimanyu Susobhanan, Lankeswar Dey, A. Gopakumar, Paul T. Baker, and Philippe Jetzer
Phys. Rev. D 109, 103018 (2024) - Published 13 May, 2024
Aaron Lackey–Stewart, Raghav Chari, Adam Cole, Nick Brey, Kyle Gregory, Ryan Crowley, Mike Guidry, and Eirik Endeve
Phys. Rev. D 109, 103019 (2024) - Published 13 May, 2024
Kohta Murase
Phys. Rev. D 109, 103020 (2024) - Published 13 May, 2024
Djuna Croon and Jeremy Sakstein
Phys. Rev. D 109, 103021 (2024) - Published 14 May, 2024
The authors study the effect of annihilating dark matter on massive stars suffering from pair-instability. The annihilation of dark matter inserts energy into the star and the authors show that for sufficient dark matter density, significant changes occur in the masses of the resulting black holes. For dark matter masses greater than 1 GeV, most of the dark matter is in the core which leads to a more violent explosion, resulting in a lighter black hole, while for masses less than .5 GeV, most of the dark matter is in the envelope, supporting the star through energy release, causing a less violent explosion and a more massive black hole.
Gaël Servignat, Philip J. Davis, Jérôme Novak, Micaela Oertel, and José A. Pons
Phys. Rev. D 109, 103022 (2024) - Published 14 May, 2024
Arthur G. Suvorov, Hao-Jui Kuan, Alexis Reboul-Salze, and Kostas D. Kokkotas
Phys. Rev. D 109, 103023 (2024) - Published 14 May, 2024
Giacomo Fedrigo, Federico Cattorini, Bruno Giacomazzo, and Monica Colpi
Phys. Rev. D 109, 103024 (2024) - Published 15 May, 2024
Sk Md Adil Imam, Tuhin Malik, Constança Providência, and B. K. Agrawal
Phys. Rev. D 109, 103025 (2024) - Published 16 May, 2024
Wenzer Qin, Julian B. Muñoz, Hongwan Liu, and Tracy R. Slatyer
Phys. Rev. D 109, 103026 (2024) - Published 16 May, 2024
Pedro L. Espino, David Radice, Francesco Zappa, Rossella Gamba, and Sebastiano Bernuzzi
Phys. Rev. D 109, 103027 (2024) - Published 16 May, 2024
Pedro De la Torre Luque, Shyam Balaji, and Pierluca Carenza
Phys. Rev. D 109, 103028 (2024) - Published 17 May, 2024
Lami Suleiman and Jocelyn Read
Phys. Rev. D 109, 103029 (2024) - Published 17 May, 2024
Mohammad Aghaie, Giovanni Armando, Alessandro Dondarini, and Paolo Panci
Phys. Rev. D 109, 103030 (2024) - Published 17 May, 2024
Cong Zhou, Lei Huang, Kangrou Guo, Ya-Ping Li, and Zhen Pan
Phys. Rev. D 109, 103031 (2024) - Published 20 May, 2024
The paper successfully models X-ray observational aspects of Quasi-Periodic Eruptions (QPEs) in galactic nuclei as due to collisions between a Tidal Disruption Event (TDE) accretion disk and a stellar mass black hole or main sequence star orbiting around a nuclear supermassive black hole (SMBH). This can have key implications in understanding EMRIs and stellar orbits in the vicinity of SMBHs.
Valéria Carvalho, Márcio Ferreira, Constança Providência, and Michał Bejger
Phys. Rev. D 109, 103032 (2024) - Published 20 May, 2024
Praveen Manoharan and Kostas D. Kokkotas
Phys. Rev. D 109, 103033 (2024) - Published 20 May, 2024
Luciano Combi, Huan Yang, Eduardo Gutierrez, Scott C. Noble, Gustavo E. Romero, and Manuela Campanelli
Phys. Rev. D 109, 103034 (2024) - Published 20 May, 2024
Rachael Huxford, Rahul Kashyap, Ssohrab Borhanian, Arnab Dhani, Ish Gupta, and B. S. Sathyaprakash
Phys. Rev. D 109, 103035 (2024) - Published 22 May, 2024
Suprovo Ghosh, Bikram Keshari Pradhan, and Debarati Chatterjee
Phys. Rev. D 109, 103036 (2024) - Published 22 May, 2024
Anson Kost, Lucas Johns, and Huaiyu Duan
Phys. Rev. D 109, 103037 (2024) - Published 23 May, 2024
Gabriel Gómez and Patrick Valageas
Phys. Rev. D 109, 103038 (2024) - Published 23 May, 2024
C. Baheeja, S. Sahayanathan, F. M. Rieger, and C. D. Ravikumar
Phys. Rev. D 109, 103039 (2024) - Published 24 May, 2024
Erick Urquilla and Sherwood Richers
Phys. Rev. D 109, 103040 (2024) - Published 30 May, 2024
Po-Wen Chang, Bei Zhou, Kohta Murase, and Marc Kamionkowski
Phys. Rev. D 109, 103041 (2024) - Published 30 May, 2024
Joshua Ziegler and Katherine Freese
Phys. Rev. D 109, 103042 (2024) - Published 31 May, 2024
Teppei Okumura, Atsushi Taruya, Toshiki Kurita, and Takahiro Nishimichi
Phys. Rev. D 109, 103501 (2024) - Published 1 May, 2024
Agnès Ferté and Kevin Hong
Phys. Rev. D 109, 103502 (2024) - Published 1 May, 2024
Georgios Valogiannis, Sihan Yuan, and Cora Dvorkin
Phys. Rev. D 109, 103503 (2024) - Published 2 May, 2024
Antonio L. Maroto and Alfredo D. Miravet
Phys. Rev. D 109, 103504 (2024) - Published 2 May, 2024
Jean-Philippe Uzan and Cyril Pitrou
Phys. Rev. D 109, 103505 (2024) - Published 6 May, 2024
Tristan L. Smith and Vivian Poulin
Phys. Rev. D 109, 103506 (2024) - Published 6 May, 2024
Joshua N. Benabou, Adriano Testa, Chen Heinrich, Henry S. Grasshorn Gebhardt, and Olivier Doré
Phys. Rev. D 109, 103507 (2024) - Published 6 May, 2024
Luis A. Anchordoqui and Ignatios Antoniadis
Phys. Rev. D 109, 103508 (2024) - Published 7 May, 2024
Kaiki Taro Inoue, Takumi Shinohara, Teruaki Suyama, and Tomo Takahashi
Phys. Rev. D 109, 103509 (2024) - Published 8 May, 2024
Xiaoyong Chu and Josef Pradler
Phys. Rev. D 109, 103510 (2024) - Published 8 May, 2024
Cao H. Nam
Phys. Rev. D 109, 103511 (2024) - Published 8 May, 2024
Md. Wali Hossain and Afaq Maqsood
Phys. Rev. D 109, 103512 (2024) - Published 9 May, 2024
Takahiro S. Yamamoto, Ryoto Inui, Yuichiro Tada, and Shuichiro Yokoyama
Phys. Rev. D 109, 103514 (2024) - Published 10 May, 2024
Sergei D. Odintsov, Tanmoy Paul, and Soumitra SenGupta
Phys. Rev. D 109, 103515 (2024) - Published 10 May, 2024
Ellie Hughes, Fei Ge, Francis-Yan Cyr-Racine, Lloyd Knox, and Srinivasan Raghunathan
Phys. Rev. D 109, 103516 (2024) - Published 10 May, 2024
Anya Paopiamsap, David Alonso, Deaglan J. Bartlett, and Maciej Bilicki
Phys. Rev. D 109, 103517 (2024) - Published 13 May, 2024
Milos Indjin, I-Kang Liu, Nick P. Proukakis, and Gerasimos Rigopoulos
Phys. Rev. D 109, 103518 (2024) - Published 13 May, 2024
William Giarè, Eleonora Di Valentino, and Alessandro Melchiorri
Phys. Rev. D 109, 103519 (2024) - Published 13 May, 2024
Léo Vacher and Nils Schöneberg
Phys. Rev. D 109, 103520 (2024) - Published 13 May, 2024
Anish Giri and Robert J. Scherrer
Phys. Rev. D 109, 103521 (2024) - Published 13 May, 2024
Evangelos A. Paraskevas, Arman Çam, Leandros Perivolaropoulos, and Özgür Akarsu
Phys. Rev. D 109, 103522 (2024) - Published 13 May, 2024
Hiroki Matsui, Alexandros Papageorgiou, Fuminobu Takahashi, and Takahiro Terada
Phys. Rev. D 109, 103523 (2024) - Published 14 May, 2024
Katsuya T. Abe and Hiroyuki Tashiro
Phys. Rev. D 109, 103524 (2024) - Published 14 May, 2024
Igor de O. C. Pedreira, Micol Benetti, Elisa G. M. Ferreira, Leila L. Graef, and Laura Herold
Phys. Rev. D 109, 103525 (2024) - Published 14 May, 2024
Russell Boey, Yourong Wang, Emily Kendall, and Richard Easther
Phys. Rev. D 109, 103526 (2024) - Published 15 May, 2024
Adam He, Rui An, Mikhail M. Ivanov, and Vera Gluscevic
Phys. Rev. D 109, 103527 (2024) - Published 16 May, 2024
Jiamin Hou, Azadeh Moradinezhad Dizgah, ChangHoon Hahn, Michael Eickenberg, Shirley Ho, Pablo Lemos, Elena Massara, Chirag Modi, Liam Parker, and Bruno Régaldo-Saint Blancard
Phys. Rev. D 109, 103528 (2024) - Published 17 May, 2024
The paper presents the first cosmological constraints from SDSS-III Baryon Oscillation Spectroscopic Survey (BOSS) redshift-space galaxy skew spectra. This work goes beyond two-point statistics, accesses cosmological information down to nonlinear scales, and uses the Simulation-Based Inference of Galaxies (SIMBIG) forward modeling framework to improve constraints for several cosmological parameters up to 38%.
Hurum Maksora Tohfa, Jack Crump, Ethan Baker, Luke Hart, Daniel Grin, Madeline Brosius, and Jens Chluba
Phys. Rev. D 109, 103529 (2024) - Published 17 May, 2024
Boryana Hadzhiyska, Lehman H. Garrison, Daniel J. Eisenstein, and Simone Ferraro
Phys. Rev. D 109, 103530 (2024) - Published 20 May, 2024
Gang Liu, Jiaze Gao, Yufen Han, Yuhao Mu, and Lixin Xu
Phys. Rev. D 109, 103531 (2024) - Published 20 May, 2024
Zhongkai Wang (王中凯), Shengqing Gao (高盛晴), Yungui Gong (龚云贵), and Yue Wang (王岳)
Phys. Rev. D 109, 103532 (2024) - Published 20 May, 2024
Bernardita Ried Guachalla, Emmanuel Schaan, Boryana Hadzhiyska, and Simone Ferraro
Phys. Rev. D 109, 103533 (2024) - Published 22 May, 2024
Boryana Hadzhiyska, Simone Ferraro, Bernardita Ried Guachalla, and Emmanuel Schaan
Phys. Rev. D 109, 103534 (2024) - Published 22 May, 2024
Nikolaos Kouvatsos, Alexander C. Jenkins, Arianna I. Renzini, Joseph D. Romano, and Mairi Sakellariadou
Phys. Rev. D 109, 103535 (2024) - Published 22 May, 2024
Nanoom Lee and Yacine Ali-Haïmoud
Phys. Rev. D 109, 103536 (2024) - Published 22 May, 2024
Aurora Ireland and Seth Koren
Phys. Rev. D 109, 103537 (2024) - Published 23 May, 2024
Géraldine Servant and Peera Simakachorn
Phys. Rev. D 109, 103538 (2024) - Published 23 May, 2024
Spacetime wrinkles known as cosmic strings, which might have formed in the early Universe, could be a dominant source of gravitational waves at ultrahigh frequencies, according to new calculations.
Theo Schutt, Abhishek S. Maniyar, Emmanuel Schaan, William R. Coulton, and Nishant Mishra
Phys. Rev. D 109, 103539 (2024) - Published 23 May, 2024
Simon Clery, Marcos A. G. Garcia, Yann Mambrini, and Keith A. Olive
Phys. Rev. D 109, 103540 (2024) - Published 24 May, 2024
Jason Kristiano and Jun’ichi Yokoyama
Phys. Rev. D 109, 103541 (2024) - Published 29 May, 2024
H. Arthur Weldon
Phys. Rev. D 109, 104001 (2024) - Published 1 May, 2024
A. Ashok, P. B. Covas, R. Prix, and M. A. Papa
Phys. Rev. D 109, 104002 (2024) - Published 1 May, 2024
David Trestini
Phys. Rev. D 109, 104003 (2024) - Published 2 May, 2024
Gerardo García-Moreno and Alejandro Jiménez Cano
Phys. Rev. D 109, 104004 (2024) - Published 2 May, 2024
R. A. Konoplya and A. Zhidenko
Phys. Rev. D 109, 104005 (2024) - Published 2 May, 2024
Zhi Luo, Hao Yu, and Jin Li
Phys. Rev. D 109, 104006 (2024) - Published 2 May, 2024
Shin’ichi Nojiri, S. D. Odintsov, and Vladimir Folomeev
Phys. Rev. D 109, 104007 (2024) - Published 2 May, 2024
Ioannis Liodis, Evangelos Smyrniotis, and Nikolaos Stergioulas
Phys. Rev. D 109, 104008 (2024) - Published 2 May, 2024
Sebastián Alfaro, P. A. González, Diego Olmos, Eleftherios Papantonopoulos, and Yerko Vásquez
Phys. Rev. D 109, 104009 (2024) - Published 3 May, 2024
Jeremy Miller, Benjamin Leather, Adam Pound, and Niels Warburton
Phys. Rev. D 109, 104010 (2024) - Published 6 May, 2024
Emmanuel Chávez Nambo, Alberto Diez-Tejedor, Armando A. Roque, and Olivier Sarbach
Phys. Rev. D 109, 104011 (2024) - Published 6 May, 2024
Saurabh Kumar, Akhil Uniyal, and Sayan Chakrabarti
Phys. Rev. D 109, 104012 (2024) - Published 6 May, 2024
Vladimir Strokov and Emanuele Berti
Phys. Rev. D 109, 104013 (2024) - Published 7 May, 2024
Jie Wu (吴洁), Jin Li (李瑾), Xiaolin Liu (刘骁麟), and Zhoujian Cao (曹周键)
Phys. Rev. D 109, 104014 (2024) - Published 7 May, 2024
Zi-Chao Lin, Hao Yu, and Yungui Gong (龚云贵)
Phys. Rev. D 109, 104015 (2024) - Published 6 May, 2024
Filipe S. Miguel
Phys. Rev. D 109, 104016 (2024) - Published 6 May, 2024
W. Barker and C. Marzo
Phys. Rev. D 109, 104017 (2024) - Published 6 May, 2024
R. A. Konoplya
Phys. Rev. D 109, 104018 (2024) - Published 6 May, 2024
Alexandre Toubiana, Lorenzo Pompili, Alessandra Buonanno, Jonathan R. Gair, and Michael L. Katz
Phys. Rev. D 109, 104019 (2024) - Published 6 May, 2024
Zeus S. Moreira, Carlos A. R. Herdeiro, and Luís C. B. Crispino
Phys. Rev. D 109, 104020 (2024) - Published 7 May, 2024
Sunil Singh Bohra, Subhodeep Sarkar, and Anjan Ananda Sen
Phys. Rev. D 109, 104021 (2024) - Published 7 May, 2024
Bo-Yang Zhang (张博扬), Tao Zhu (朱涛), Jing-Fei Zhang (张敬飞), and Xin Zhang (张鑫)
Phys. Rev. D 109, 104022 (2024) - Published 7 May, 2024
Priyanka Saha, Dipanjan Dey, and Kaushik Bhattacharya
Phys. Rev. D 109, 104023 (2024) - Published 8 May, 2024
João P. B. Brito, Rafael P. Bernar, and Luís C. B. Crispino
Phys. Rev. D 109, 104024 (2024) - Published 8 May, 2024
J. E. Herrera and Y. Bonder
Phys. Rev. D 109, 104025 (2024) - Published 8 May, 2024
Dongjun Li, Asad Hussain, Pratik Wagle, Yanbei Chen, Nicolás Yunes, and Aaron Zimmerman
Phys. Rev. D 109, 104026 (2024) - Published 10 May, 2024
Loris Amalberti, François Larrouturou, and Zixin Yang
Phys. Rev. D 109, 104027 (2024) - Published 8 May, 2024
Naritaka Oshita
Phys. Rev. D 109, 104028 (2024) - Published 9 May, 2024
Pratik Wagle, Dongjun Li, Yanbei Chen, and Nicolás Yunes
Phys. Rev. D 109, 104029 (2024) - Published 10 May, 2024
Marek Rogatko
Phys. Rev. D 109, 104030 (2024) - Published 9 May, 2024
Koustav Chandra, Archana Pai, Samson H. W. Leong, and Juan Calderón Bustillo
Phys. Rev. D 109, 104031 (2024) - Published 9 May, 2024
J. Ovalle
Phys. Rev. D 109, 104032 (2024) - Published 10 May, 2024
Pedro G. S. Fernandes, Clare Burrage, Astrid Eichhorn, and Thomas P. Sotiriou
Phys. Rev. D 109, 104033 (2024) - Published 10 May, 2024
Huan Yang and Liujun Zou
Phys. Rev. D 109, 104034 (2024) - Published 10 May, 2024
Claudia de Rham, John T. Giblin, Jr., and Andrew J. Tolley
Phys. Rev. D 109, 104035 (2024) - Published 10 May, 2024
Simona J. Miller, Zoe Ko, Tom Callister, and Katerina Chatziioannou
Phys. Rev. D 109, 104036 (2024) - Published 10 May, 2024
João Luís Rosa and Sante Carloni
Phys. Rev. D 109, 104037 (2024) - Published 10 May, 2024
Conor Dyson, Jaime Redondo-Yuste, Maarten van de Meent, and Vitor Cardoso
Phys. Rev. D 109, 104038 (2024) - Published 10 May, 2024
Jianhui Lin, Moisés Bravo-Gaete, and Xiangdong Zhang
Phys. Rev. D 109, 104039 (2024) - Published 10 May, 2024
Jørgen Musaeus, Niels A. Obers, and Gerben Oling
Phys. Rev. D 109, 104040 (2024) - Published 10 May, 2024
Tao Yang, Rong-Gen Cai, Zhoujian Cao, and Hyung Mok Lee
Phys. Rev. D 109, 104041 (2024) - Published 13 May, 2024
Sayak Datta
Phys. Rev. D 109, 104042 (2024) - Published 13 May, 2024
Veome Kapil, Luca Reali, Roberto Cotesta, and Emanuele Berti
Phys. Rev. D 109, 104043 (2024) - Published 13 May, 2024
Rodrigo Aros and Milko Estrada
Phys. Rev. D 109, 104044 (2024) - Published 13 May, 2024
Sebastian Khan
Phys. Rev. D 109, 104045 (2024) - Published 13 May, 2024
Yao Guo, Wenjie Zhong, Yiqiu Ma, and Daiqin Su
Phys. Rev. D 109, 104046 (2024) - Published 13 May, 2024
Kai Lin and Wei-Liang Qian
Phys. Rev. D 109, 104047 (2024) - Published 14 May, 2024
Pablo Navarro, Benito Gimeno, Juan Monzó-Cabrera, Alejandro Díaz-Morcillo, and Diego Blas
Phys. Rev. D 109, 104048 (2024) - Published 14 May, 2024
Shaswata Chowdhury, Pritam Banerjee, and Aneta Wojnar
Phys. Rev. D 109, 104049 (2024) - Published 17 May, 2024
Hengrui Zhu, Justin L. Ripley, Frans Pretorius, Sizheng Ma, Keefe Mitman, Robert Owen, Michael Boyle, Yitian Chen, Nils Deppe, Lawrence E. Kidder, Jordan Moxon, Kyle C. Nelli, Harald P. Pfeiffer, Mark A. Scheel, William Throwe, and Nils L. Vu
Phys. Rev. D 109, 104050 (2024) - Published 16 May, 2024
Galin N. Gyulchev, Ayush Roy, Lucas G. Collodel, Petya G. Nedkova, Stoytcho S. Yazadjiev, and Daniela D. Doneva
Phys. Rev. D 109, 104051 (2024) - Published 16 May, 2024
Matthew Maitra and Jeroen Tromp
Phys. Rev. D 109, 104052 (2024) - Published 16 May, 2024
Chen-Wei Tong, Dong-Hui Du, and Jia-Rui Sun
Phys. Rev. D 109, 104053 (2024) - Published 16 May, 2024
Márcio E. S. Alves
Phys. Rev. D 109, 104054 (2024) - Published 17 May, 2024
Özgür Akarsu, Mariam Bouhmadi-López, Nihan Katırcı, Elham Nazari, Mahmood Roshan, and N. Merve Uzun
Phys. Rev. D 109, 104055 (2024) - Published 17 May, 2024
Julio Arrechea, Carlos Barceló, Raúl Carballo-Rubio, and Luis J. Garay
Phys. Rev. D 109, 104056 (2024) - Published 17 May, 2024
Masato Minamitsuji, Shinji Mukohyama, and Shinji Tsujikawa
Phys. Rev. D 109, 104057 (2024) - Published 20 May, 2024
Che-Yu Chen and Yuki Yokokura
Phys. Rev. D 109, 104058 (2024) - Published 20 May, 2024
Andrew Spiers
Phys. Rev. D 109, 104059 (2024) - Published 20 May, 2024
Salvatore Capozziello, Silvia De Bianchi, and Emmanuele Battista
Phys. Rev. D 109, 104060 (2024) - Published 20 May, 2024
Ximeng Li and Jing Ren
Phys. Rev. D 109, 104061 (2024) - Published 20 May, 2024
Matteo Califano, Rocco D’Agostino, and Daniele Vernieri
Phys. Rev. D 109, 104062 (2024) - Published 20 May, 2024
Salvatore Ribisi and Francesco Sartini
Phys. Rev. D 109, 104063 (2024) - Published 20 May, 2024
Abhishek Hegade K. R., Justin L. Ripley, and Nicolás Yunes
Phys. Rev. D 109, 104064 (2024) - Published 20 May, 2024
Tim Grimbergen, Stefano Schmidt, Chinmay Kalaghatgi, and Chris van den Broeck
Phys. Rev. D 109, 104065 (2024) - Published 20 May, 2024
Quinn Taylor, Glenn D. Starkman, Michael Hinczewski, Deyan P. Mihaylov, Joseph Silk, and Jose de Freitas Pacheco
Phys. Rev. D 109, 104066 (2024) - Published 21 May, 2024
Shinya Tomizawa and Ryotaku Suzuki
Phys. Rev. D 109, 104067 (2024) - Published 21 May, 2024
Júnior D. Toniato and Martín G. Richarte
Phys. Rev. D 109, 104068 (2024) - Published 22 May, 2024
Cagdas Ulus Agca and Bayram Tekin
Phys. Rev. D 109, 104069 (2024) - Published 22 May, 2024
Sizheng Ma and Huan Yang
Phys. Rev. D 109, 104070 (2024) - Published 23 May, 2024
Yusuke Mikura, Vincenzo Naso, and Roberto Percacci
Phys. Rev. D 109, 104071 (2024) - Published 24 May, 2024
Hiroki Takeda, Shinji Tsujikawa, and Atsushi Nishizawa
Phys. Rev. D 109, 104072 (2024) - Published 24 May, 2024
K. Hari and Dawood Kothawala
Phys. Rev. D 109, 104073 (2024) - Published 24 May, 2024
Farukh Abdulkhamidov, Petya Nedkova, Javlon Rayimbaev, Jutta Kunz, and Bobomurat Ahmedov
Phys. Rev. D 109, 104074 (2024) - Published 30 May, 2024
Sebastian Bahamonde and Jorge Gigante Valcarcel
Phys. Rev. D 109, 104075 (2024) - Published 29 May, 2024
Ramin G. Daghigh, Michael D. Green, and Jodin C. Morey
Phys. Rev. D 109, 104076 (2024) - Published 29 May, 2024
João Luís Rosa and Tom Zlosnik
Phys. Rev. D 109, 104077 (2024) - Published 29 May, 2024
Jun-Ru Chen, Long-Xing Huang, Li Zhao, and Yong-Qiang Wang
Phys. Rev. D 109, 104078 (2024) - Published 30 May, 2024
Matteo Della Rocca, Susanna Barsanti, Leonardo Gualtieri, and Andrea Maselli
Phys. Rev. D 109, 104079 (2024) - Published 31 May, 2024
R. V. Khakimov, G. Yu. Prokhorov, O. V. Teryaev, and V. I. Zakharov
Phys. Rev. D 109, 105001 (2024) - Published 1 May, 2024
Muhammad Asaduzzaman, Raghav G. Jha, and Bharath Sambasivam
Phys. Rev. D 109, 105002 (2024) - Published 1 May, 2024
H. E. Camblong, A. Chakraborty, P. Lopez-Duque, and C. R. Ordóñez
Phys. Rev. D 109, 105003 (2024) - Published 2 May, 2024
Samuel Kováčik and Juraj Tekel
Phys. Rev. D 109, 105004 (2024) - Published 2 May, 2024
R. L. P. G. Amaral, V. E. R. Lemes, O. S. Ventura, and L. C. Q. Vilar
Phys. Rev. D 109, 105005 (2024) - Published 2 May, 2024
Maxim N. Chernodub and Peter Millington
Phys. Rev. D 109, 105006 (2024) - Published 3 May, 2024
Ian Banta, Tianji Cai, Nathaniel Craig, and Zhengkang Zhang
Phys. Rev. D 109, 105007 (2024) - Published 7 May, 2024
N. L. Diaz, J. M. Matera, and R. Rossignoli
Phys. Rev. D 109, 105008 (2024) - Published 6 May, 2024
Morgan H. Lynch
Phys. Rev. D 109, 105009 (2024) - Published 6 May, 2024
Parikshit Dutta and Arghya Chattopadhyay
Phys. Rev. D 109, 105010 (2024) - Published 6 May, 2024
Philipp A. Höhn, Andrea Russo, and Alexander R. H. Smith
Phys. Rev. D 109, 105011 (2024) - Published 6 May, 2024
Makoto Sakamoto and Kazunori Takenaga
Phys. Rev. D 109, 105012 (2024) - Published 9 May, 2024
Bruno S. Felipe and João P. M. Pitelli
Phys. Rev. D 109, 105013 (2024) - Published 10 May, 2024
Aleksey Cherman and Maria Neuzil
Phys. Rev. D 109, 105014 (2024) - Published 10 May, 2024
The authors discuss QCD with adjoint massless fermions and its deformation by the two (classically) marginal four-fermion operators, only one of which respects a noninvertible symmetry. They compute the functions of the two operators and discuss in detail their behavior in the IR, thereby clarifying some confusion in the literature stemming from different approaches, confinement behavior and treatment on the lattice. These are important results for this of confinement and lattice formulations.
Satoshi Nawata, Yiwen Pan, and Jiahao Zheng
Phys. Rev. D 109, 105015 (2024) - Published 10 May, 2024
Rajesh Karmakar and Debaprasad Maity
Phys. Rev. D 109, 105016 (2024) - Published 13 May, 2024
Antonio M. García-García, Lucas Sá, Jacobus J. M. Verbaarschot, and Can Yin
Phys. Rev. D 109, 105017 (2024) - Published 13 May, 2024
Leonardo Rastelli and Brandon C. Rayhaun
Phys. Rev. D 109, 105018 (2024) - Published 13 May, 2024
The authors prove (under some mild assumptions) the conjecture about the rationality of the trace anomaly central charges and in = 2 superconformal theories. They work on the Higgs branch and use rigorous results from vertex operator algebras in their arguments. This closes some shortcomings of the Coulomb branch arguments and rigorously shows the generality of this intriguing property.
Clay Córdova and Kantaro Ohmori
Phys. Rev. D 109, 105019 (2024) - Published 13 May, 2024
Csaba Csáki, Ofri Telem, and John Terning
Phys. Rev. D 109, 105020 (2024) - Published 14 May, 2024
Nathan Herring, Shuyang Cao, and Daniel Boyanovsky
Phys. Rev. D 109, 105021 (2024) - Published 15 May, 2024
Adrián del Río and Evelyn-Andreea Ester
Phys. Rev. D 109, 105022 (2024) - Published 17 May, 2024
Jorge G. Russo and Paul K. Townsend
Phys. Rev. D 109, 105023 (2024) - Published 20 May, 2024
Adrià Delhom, Killian Guerrero, Paula Calizaya Cabrera, Kévin Falque, Alberto Bramati, Anthony J. Brady, Maxime J. Jacquet, and Ivan Agullo
Phys. Rev. D 109, 105024 (2024) - Published 28 May, 2024
Subhajit Barman, Bibhas Ranjan Majhi, and L. Sriramkumar
Phys. Rev. D 109, 105025 (2024) - Published 23 May, 2024
P. Saura-Bastida, A. Das, G. Sierra, and J. Molina-Vilaplana
Phys. Rev. D 109, 105026 (2024) - Published 23 May, 2024
Sebastián Céspedes, Senarath de Alwis, Francesco Muia, and Fernando Quevedo
Phys. Rev. D 109, 105027 (2024) - Published 24 May, 2024
Oleg Andreev
Phys. Rev. D 109, 106001 (2024) - Published 1 May, 2024
Falk Hassler and Yuho Sakatani
Phys. Rev. D 109, 106002 (2024) - Published 1 May, 2024
Jinwei Chu and Savan Kharel
Phys. Rev. D 109, 106003 (2024) - Published 2 May, 2024
In a series of two papers, the authors introduce a new method to compute the tree-level -gluon scattering amplitudes in anti-de Sitter spacetime (AdS) space within the AdS/CFT duality. Working with Mellin amplitudes, the authors propose Feynman rules and show that they take a similar form as those in flat space. This intriguing similarity led the authors to propose a novel dictionary: comprehensive rules that bridge AdS Mellin amplitudes with flat-space gluon amplitudes.
B. Nikolić and D. Obrić
Phys. Rev. D 109, 106004 (2024) - Published 2 May, 2024
Alice Boldrin, Przemysław Małkiewicz, and Patrick Peter
Phys. Rev. D 109, 106005 (2024) - Published 2 May, 2024
Edward Hirst and Tancredi Schettini Gherardini
Phys. Rev. D 109, 106006 (2024) - Published 2 May, 2024
Andrés Anabalón, Álvaro Arboleya, and Adolfo Guarino
Phys. Rev. D 109, 106007 (2024) - Published 7 May, 2024
Wu-zhong Guo and Jiaju Zhang
Phys. Rev. D 109, 106008 (2024) - Published 6 May, 2024
Guillermo A. Mena Marugán and Andrés Mínguez-Sánchez
Phys. Rev. D 109, 106009 (2024) - Published 8 May, 2024
Muhammad Asaduzzaman, Simon Catterall, and Abhishek Samlodia
Phys. Rev. D 109, 106010 (2024) - Published 10 May, 2024
Sylvain Fichet, Eugenio Megías, and Mariano Quirós
Phys. Rev. D 109, 106011 (2024) - Published 10 May, 2024
Seiji Terashima
Phys. Rev. D 109, 106012 (2024) - Published 10 May, 2024
Florent Baume, Jonathan J. Heckman, Max Hübner, Ethan Torres, Andrew P. Turner, and Xingyang Yu
Phys. Rev. D 109, 106013 (2024) - Published 10 May, 2024
Emma Albertini, Fay Dowker, Arad Nasiri, and Stav Zalel
Phys. Rev. D 109, 106014 (2024) - Published 13 May, 2024
This paper deals with interacting quantum field theories on a causal set. Free theories on these sets have been copiously discussed but here, the authors develop perturbative expansions, in-in and in-out correlators and make a suggestion on how to define an S-matrix, a daunting task, given the absence of Cauchy surfaces in a causal set.
Nathan Berkovits and Rodrigo S. Pitombo
Phys. Rev. D 109, 106015 (2024) - Published 13 May, 2024
Pietro Donà, Hal M. Haggard, Carlo Rovelli, and Francesca Vidotto
Phys. Rev. D 109, 106016 (2024) - Published 13 May, 2024
Pavan Dharanipragada and B. Sathiapalan
Phys. Rev. D 109, 106017 (2024) - Published 15 May, 2024
Yadikaer Maitiniyazi, Shinya Matsuzaki, Kin-ya Oda, and Masatoshi Yamada
Phys. Rev. D 109, 106018 (2024) - Published 20 May, 2024
Eric Petermann and Haye Hinrichsen
Phys. Rev. D 109, 106019 (2024) - Published 20 May, 2024
Alessandro Georgoudis, Carlo Heissenberg, and Rodolfo Russo
Phys. Rev. D 109, 106020 (2024) - Published 20 May, 2024
David Osten
Phys. Rev. D 109, 106021 (2024) - Published 24 May, 2024
Yu-Ping An, Li Li, Chuan-Yin Xia, and Hua-Bi Zeng
Phys. Rev. D 109, 106022 (2024) - Published 29 May, 2024
Riccardo Borsato, Sibylle Driezen, Ben Hoare, Ana L. Retore, and Fiona K. Seibold
Phys. Rev. D 109, 106023 (2024) - Published 30 May, 2024