R Alves Batista, G Amelino-Camelia, D Boncioli, J M Carmona, A di Matteo, G Gubitosi, I Lobo, N E Mavromatos, C Pfeifer, D Rubiera-Garcia, E N Saridakis, T Terzić, E C Vagenas, P Vargas Moniz, H Abdalla, M Adamo, A Addazi, F K Anagnostopoulos, V Antonelli, M Asorey, A Ballesteros, S Basilakos, D Benisty, M Boettcher, J Bolmont, A Bonilla, P Bosso, M Bouhmadi-López, L Burderi, A Campoy-Ordaz, S Caroff, S Cerci, J L Cortes, V D’Esposito, S Das, M de Cesare, M Demirci, F Di Lodovico, T Di Salvo, J M Diego, G S Djordjevic, A Domi, L Ducobu, C Escamilla-Rivera, G Fabiano, D Fernández-Silvestre, S A Franchino-Viñas, A M Frassino, D Frattulillo, M Gaug, L Á Gergely, E I Guendelman, D Guetta, I Gutierrez-Sagredo, P He, S Heefer, T Jurić, T Katori, J Kowalski-Glikman, G Lambiase, J Levi Said, C Li, H Li, G G Luciano, B-Q Ma, A Marciano, M Martinez, A Mazumdar, G Menezes, F Mercati, D Minic, L Miramonti, V A Mitsou, M F Mustamin, S Navas, G J Olmo, D Oriti, A Övgün, R C Pantig, A Parvi..
{"title":"White paper and roadmap for quantum gravity phenomenology in the multi-messenger era","authors":"R Alves Batista, G Amelino-Camelia, D Boncioli, J M Carmona, A di Matteo, G Gubitosi, I Lobo, N E Mavromatos, C Pfeifer, D Rubiera-Garcia, E N Saridakis, T Terzić, E C Vagenas, P Vargas Moniz, H Abdalla, M Adamo, A Addazi, F K Anagnostopoulos, V Antonelli, M Asorey, A Ballesteros, S Basilakos, D Benisty, M Boettcher, J Bolmont, A Bonilla, P Bosso, M Bouhmadi-López, L Burderi, A Campoy-Ordaz, S Caroff, S Cerci, J L Cortes, V D’Esposito, S Das, M de Cesare, M Demirci, F Di Lodovico, T Di Salvo, J M Diego, G S Djordjevic, A Domi, L Ducobu, C Escamilla-Rivera, G Fabiano, D Fernández-Silvestre, S A Franchino-Viñas, A M Frassino, D Frattulillo, M Gaug, L Á Gergely, E I Guendelman, D Guetta, I Gutierrez-Sagredo, P He, S Heefer, T Jurić, T Katori, J Kowalski-Glikman, G Lambiase, J Levi Said, C Li, H Li, G G Luciano, B-Q Ma, A Marciano, M Martinez, A Mazumdar, G Menezes, F Mercati, D Minic, L Miramonti, V A Mitsou, M F Mustamin, S Navas, G J Olmo, D Oriti, A Övgün, R C Pantig, A Parvi..","doi":"10.1088/1361-6382/ad605a","DOIUrl":null,"url":null,"abstract":"The unification of quantum mechanics and general relativity has long been elusive. Only recently have empirical predictions of various possible theories of quantum gravity been put to test, where a clear signal of quantum properties of gravity is still missing. The dawn of multi-messenger high-energy astrophysics has been tremendously beneficial, as it allows us to study particles with much higher energies and travelling much longer distances than possible in terrestrial experiments, but more progress is needed on several fronts. A thorough appraisal of current strategies and experimental frameworks, regarding quantum gravity phenomenology, is provided here. Our aim is twofold: a description of tentative multimessenger explorations, plus a focus on future detection experiments. As the outlook of the network of researchers that formed through the COST Action CA18108 ‘Quantum gravity phenomenology in the multi-messenger approach (QG-MM)’, in this work we give an overview of the desiderata that future theoretical frameworks, observational facilities, and data-sharing policies should satisfy in order to advance the cause of quantum gravity phenomenology.","PeriodicalId":10282,"journal":{"name":"Classical and Quantum Gravity","volume":"49 1","pages":""},"PeriodicalIF":3.6000,"publicationDate":"2025-01-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Classical and Quantum Gravity","FirstCategoryId":"101","ListUrlMain":"https://doi.org/10.1088/1361-6382/ad605a","RegionNum":3,"RegionCategory":"物理与天体物理","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"ASTRONOMY & ASTROPHYSICS","Score":null,"Total":0}
引用次数: 0
Abstract
The unification of quantum mechanics and general relativity has long been elusive. Only recently have empirical predictions of various possible theories of quantum gravity been put to test, where a clear signal of quantum properties of gravity is still missing. The dawn of multi-messenger high-energy astrophysics has been tremendously beneficial, as it allows us to study particles with much higher energies and travelling much longer distances than possible in terrestrial experiments, but more progress is needed on several fronts. A thorough appraisal of current strategies and experimental frameworks, regarding quantum gravity phenomenology, is provided here. Our aim is twofold: a description of tentative multimessenger explorations, plus a focus on future detection experiments. As the outlook of the network of researchers that formed through the COST Action CA18108 ‘Quantum gravity phenomenology in the multi-messenger approach (QG-MM)’, in this work we give an overview of the desiderata that future theoretical frameworks, observational facilities, and data-sharing policies should satisfy in order to advance the cause of quantum gravity phenomenology.
期刊介绍:
Classical and Quantum Gravity is an established journal for physicists, mathematicians and cosmologists in the fields of gravitation and the theory of spacetime. The journal is now the acknowledged world leader in classical relativity and all areas of quantum gravity.