Black holes, gravitational waves and fundamental physics: a roadmap
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Authors
Barack, Leor
Cardoso, Vitor
Nissanke, Samaya
Sotiriou, Thomas P
Askar, Abbas
Belczynski, Krzysztof
Bertone, Gianfranco
Bon, Edi
Blas, Diego
Brito, Richard
Bulik, Tomasz
Burrage, Clare
Byrnes, Christian T
Caprini, Chiara
Chernyakova, Masha
Chrusciel, Piotr
Colpi, Monica
Ferrari, Valeria
Gaggero, Daniele
Gair, Jonathan
Garcia-Bellido, Juan
Hassan, SF
Heisenberg, Lavinia
Hendry, Martin
Heng, Ik Siong
Herdeiro, Carlos
Hinderer, Tanja
Horesh, Assaf
Kavanagh, Bradley J
Kocsis, Bence
Kramer, Michael
Tiec, Alexandre Le
Mingarelli, Chiara
Nardini, Germano
Nelemans, Gijs
Palenzuela, Carlos
Pani, Paolo
Perego, Albino
Porter, Edward K
Rossi, Elena M
Schmidt, Patricia
Sesana, Alberto
Stamerra, Antonio
Stein, Leo C
Tamanini, Nicola
Tauris, Thomas M
Urena-Lopez, L Arturo
Vincent, Frederic
Volonteri, Marta
Wardell, Barry
Wex, Norbert
Yagi, Kent
Abdelsalhin, Tiziano
Aloy, Miguel Angel
Amaro-Seoane, Pau
Annulli, Lorenzo
Arca-Sedda, Manuel
Bah, Ibrahima
Barausse, Enrico
Barakovic, Elvis
Benkel, Robert
Bennett, Charles L
Bernard, Laura
Bernuzzi, Sebastiano
Berry, Christopher PL
Berti, Emanuele
Bezares, Miguel
Blanco-Pillado, Jose Juan
Blazquez-Salcedo, Jose Luis
Bonetti, Matteo
Boskovic, Mateja
Bosnjak, Zeljka
Bricman, Katja
Bruegmann, Bernd
Capelo, Pedro R
Carloni, Sante
Cerda-Duran, Pablo
Charmousis, Christos
Chaty, Sylvain
Clerici, Aurora
Coates, Andrew
Colleoni, Marta
Collodel, Lucas G
Compere, Geoffrey
Cook, William
Cordero-Carrion, Isabel
Correia, Miguel
Cruz-Dombriz, Alvaro de la
Czinner, Viktor G
Destounis, Kyriakos
Dialektopoulos, Kostas
Doneva, Daniela
Dotti, Massimo
Eckner, Christopher
Edholm, James
Emparan, Roberto
Erdem, Recai
Ferreira, Miguel
Ferreira, Pedro G
Finch, Andrew
Font, Jose A
Franchini, Nicola
Fransen, Kwinten
Gal'tsov, Dmitry
Ganguly, Apratim
Gerosa, Davide
Glampedakis, Kostas
Gomboc, Andreja
Goobar, Ariel
Gualtieri, Leonardo
Guendelman, Eduardo
Haardt, Francesco
Harmark, Troels
Hejda, Filip
Hertog, Thomas
Hopper, Seth
Husa, Sascha
Ihanec, Nada
Ikeda, Taishi
Jaodand, Amruta
Jimenez-Forteza, Philippe Jetzer Xisco
Kamionkowski, Marc
Kaplan, David E
Kazantzidis, Stelios
Kimura, Masashi
Kobayashi, Shiho
Kokkotas, Kostas
Krolik, Julian
Kunz, Jutta
Lammerzahl, Claus
Lasky, Paul
Lemos, Jose PS
Said, Jackson Levi
Liberati, Stefano
Lopes, Jorge
Luna, Raimon
Ma, Yin-Zhe
Maggio, Elisa
Montero, Marina Martinez
Maselli, Andrea
Mayer, Lucio
Mazumdar, Anupam
Messenger, Christopher
Menard, Brice
Minamitsuji, Masato
Moore, Christopher J
Mota, David
Nampalliwar, Sourabh
Nerozzi, Andrea
Nichols, David
Nissimov, Emil
Obergaulinger, Martin
Obers, Niels A
Oliveri, Roberto
Pappas, George
Pasic, Vedad
Peiris, Hiranya
Petrushevska, Tanja
Pollney, Denis
Pratten, Geraint
Rakic, Nemanja
Racz, Istvan
Ramazanouglu, Fethi M
Ramos-Buades, Antoni
Raposo, Guilherme
Rosca-Mead, Roxana
Rogatko, Marek
Rosinska, Dorota
Rosswog, Stephan
Morales, Ester Ruiz
Sakellariadou, Mairi
Sanchis-Gual, Nicolas
Salafia, Om Sharan
Samajdar, Anuradha
Sintes, Alicia
Smole, Majda
Sopuerta, Carlos
Souza-Lima, Rafael
Stalevski, Marko
Stergioulas, Nikolaos
Stevens, Chris
Tamfal, Tomas
Torres-Forne, Alejandro
Tsygankov, Sergey
Unluturk, Kivanc
Valiante, Rosa
Meent, Maarten van de
Velhinho, Jose
Verbin, Yosef
Vercnocke, Bert
Vernieri, Daniele
Vicente, Rodrigo
Vitagliano, Vincenzo
Weltman, Amanda
Whiting, Bernard
Williamson, Andrew
Witek, Helvi
Wojnar, Aneta
Yakut, Kadri
Yan, Haopeng
Yazadjiev, Stoycho
Zaharijas, Gabrijela
Zilhao, Miguel
Publication Date
2019Journal Title
Classical and Quantum Gravity
ISSN
0264-9381
Publisher
Institute of Physics Publishing
Volume
Volume 36
Issue
14
Number
143001
Language
English
Type
Article
This Version
AM
Metadata
Show full item recordCitation
Barack, L., Cardoso, V., Nissanke, S., Sotiriou, T. P., Askar, A., Belczynski, K., Bertone, G., et al. (2019). Black holes, gravitational waves and fundamental physics: a roadmap. Classical and Quantum Gravity, Volume 36 (14. 143001) https://doi.org/10.1088/1361-6382/ab0587
Abstract
The grand challenges of contemporary fundamental physics—dark matter, dark energy, vacuum energy, inflation and early universe cosmology, singularities and the hierarchy problem—all involve gravity as a key component. And of all gravitational phenomena, black holes stand out in their elegant simplicity, while harbouring some of the most remarkable predictions of General Relativity: event horizons, singularities and ergoregions.
The hitherto invisible landscape of the gravitational Universe is being unveiled before our eyes: the historical direct detection of gravitational waves by the LIGO-Virgo collaboration marks the dawn of a new era of scientific exploration. Gravitational-wave astronomy will allow us to test models of black hole formation, growth and evolution, as well as models of gravitational-wave generation and propagation. It will provide evidence for event horizons and ergoregions, test the theory of General Relativity itself, and may reveal the existence of new fundamental fields. The synthesis of these results has the potential to radically reshape our understanding of the cosmos and of the laws of Nature.
The purpose of this work is to present a concise, yet comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress. This write-up is an initiative taken within the framework of the European Action on 'Black holes, Gravitational waves and Fundamental Physics'.
Keywords
gr-qc, gr-qc, astro-ph.HE, hep-th
Sponsorship
European Research Council (646597)
European Commission Horizon 2020 (H2020) Marie Sk?odowska-Curie actions (690904)
Science and Technology Facilities Council (ST/P000673/1)
Identifiers
External DOI: https://doi.org/10.1088/1361-6382/ab0587
This record's URL: https://www.repository.cam.ac.uk/handle/1810/289779
Rights
Licence:
http://www.rioxx.net/licenses/all-rights-reserved
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