In this paper, which is of programmatic rather than quantitative nature, we aim to further delineate and sharpen the future potential of the LISA mission in the area of fundamental physics. Given the very broad range of topics that might be relevant to LISA,we present here a sample of what we view as particularly promising fundamental physics directions. We organize these directions through a “science-first” approach that allows us to classify how LISA data can inform theoretical physics in a variety of areas. For each of these theoretical physics classes, we identify the sources that are currently expected to provide the principal contribution to our knowledge, and the areas that need further development. The classification presented here should not be thought of as cast in stone, but rather as a fluid framework that is amenable to change with the flow of new insights in theoretical physics.

Prospects for fundamental physics with LISA / Barausse, Enrico; Berti, Emanuele; Hertog, Thomas; Hughes, Scott A.; Jetzer, Philippe; Pani, Paolo; Sotiriou, Thomas P.; Tamanini, Nicola; Witek, Helvi; Yagi, Kent; Yunes, Nicolás; Abdelsalhin, T.; Achucarro, A.; van Aelst, K.; Afshordi, N.; Akcay, S.; Annulli, L.; Arun, K. G.; Ayuso, I.; Baibhav, V.; Baker, T.; Bantilan, H.; Barreiro, T.; Barrera-Hinojosa, C.; Bartolo, N.; Baumann, D.; Belgacem, E.; Bellini, E.; Bellomo, N.; Ben-Dayan, I.; Bena, I.; Benkel, R.; Bergshoefs, E.; Bernard, L.; Bernuzzi, S.; Bertacca, D.; Besancon, M.; Beutler, F.; Beyer, F.; Bhagwat, S.; Bicak, J.; Biondini, S.; Bize, S.; Blas, D.; Boehmer, C.; Boller, K.; Bonga, B.; Bonvin, C.; Bosso, P.; Bozzola, G.; Brax, P.; Breitbach, M.; Brito, R.; Bruni, M.; Brügmann, B.; Bulten, H.; Buonanno, A.; Burko, L. M.; Burrage, C.; Cabral, F.; Calcagni, G.; Caprini, C.; Cárdenas-Avendaño, A.; Celoria, M.; Chatziioannou, K.; Chernoff, D.; Clough, K.; Coates, A.; Comelli, D.; Compère, G.; Croon, D.; Cruces, D.; Cusin, G.; Dalang, C.; Danielsson, U.; Das, S.; Datta, S.; de Boer, J.; De Luca, V.; De Rham, C.; Desjacques, V.; Destounis, K.; Filippo, F. Di; Dima, A.; Dimastrogiovanni, E.; Dolan, S.; Doneva, D.; Duque, F.; Durrer, R.; East, W.; Easther, R.; Elley, M.; Ellis, J. R.; Emparan, R.; Ezquiaga, J. M.; Fairbairn, M.; Fairhurst, S.; Farmer, H. F.; Fasiello, M. R.; Ferrari, V.; Ferreira, P. G.; Ficarra, G.; Figueras, P.; Fisenko, S.; Foffa, S.; Franchini, N.; Franciolini, G.; Fransen, K.; Frauendiener, J.; Frusciante, N.; Fujita, R.; Gair, J.; Ganz, A.; Garcia, P.; Garcia-Bellido, J.; Garriga, J.; Geiger, R.; Geng, C.; Gergely, L. Á.; Germani, C.; Gerosa, D.; Giddings, S. B.; Gourgoulhon, E.; Grandclement, P.; Graziani, L.; Gualtieri, L.; Haggard, D.; Haino, S.; Halburd, R.; Han, W. -B.; Hawken, A. J.; Hees, A.; Heng, I. S.; Hennig, J.; Herdeiro, C.; Hervik, S.; Holten, J. v.; Hoyle, C. J. D.; Hu, Y.; Hull, M.; Ikeda, T.; Isi, M.; Jenkins, A.; Julié, F.; Kajfasz, E.; Kalaghatgi, C.; Kaloper, N.; Kamionkowski, M.; Karas, V.; Kastha, S.; Keresztes, Z.; Kidder, L.; Kimpson, T.; Klein, A.; Klioner, S.; Kokkotas, K.; Kolesova, H.; Kolkowitz, S.; Kopp, J.; Koyama, K.; Krishnendu, N. V.; Kroon, J. A. V.; Kunz, M.; Lahav, O.; Landragin, A.; Lang, R. N.; Poncin-Lafitte, C. Le; Lemos, J.; Li, B.; Liberati, S.; Liguori, M.; Lin, F.; Liu, G.; Lobo, F. S. N.; Loll, R.; Lombriser, L.; Lovelace, G.; Macedo, R. P.; Madge, E.; Maggio, E.; Maggiore, M.; Marassi, S.; Marcoccia, P.; Markakis, C.; Martens, W.; Martinovic, K.; Martins, C. J. A. P.; Maselli, A.; Mastrogiovanni, S.; Matarrese, S.; Matas, A.; Mavromatos, N. E.; Mazumdar, A.; Meerburg, P. D.; Megias, E.; Miller, J.; Mimoso, J. P.; Mittnacht, L.; Montero, M. M.; Moore, B.; Martin-Moruno, P.; Musco, I.; Nakano, H.; Nampalliwar, S.; Nardini, G.; Nielsen, A.; Novák, J.; Nunes, N. J.; Okounkova, M.; Oliveri, R.; Oppizzi, F.; Orlando, G.; Oshita, N.; Pappas, G.; Paschalidis, V.; Peiris, H.; Peloso, M.; Perkins, S.; Pettorino, V.; Pikovski, I.; Pilo, L.; Podolsky, J.; Pontzen, A.; Prabhat, S.; Pratten, G.; Prokopec, T.; Prouza, M.; Qi, H.; Raccanelli, A.; Rajantie, A.; Randall, L.; Raposo, G.; Raymond, V.; Renaux-Petel, S.; Ricciardone, A.; Riotto, A.; Robson, T.; Roest, D.; Rollo, R.; Rosofsky, S.; Ruan, J. J.; Rubiera-García, D.; Ruiz, M.; Rusu, M.; Sabatie, F.; Sago, N.; Sakellariadou, M.; Saltas, I. D.; Sberna, L.; Sathyaprakash, B.; Scheel, M.; Schmidt, P.; Schutz, B.; Schwaller, P.; Shao, L.; Shapiro, S. L.; Shoemaker, D.; Silva, A. d.; Simpson, C.; Sopuerta, C. F.; Spallicci, A.; Stefanek, B. A.; Stein, L.; Stergioulas, N.; Stott, M.; Sutton, P.; Svarc, R.; Tagoshi, H.; Tahamtan, T.; Takeda, H.; Tanaka, T.; Tantilian, G.; Tasinato, G.; Tattersall, O.; Teukolsky, S.; Tiec, A. L.; Theureau, G.; Trodden, M.; Tolley, A.; Toubiana, A.; Traykova, D.; Tsokaros, A.; Unal, C.; Unnikrishnan, C. S.; Vagenas, E. C.; Valageas, P.; Vallisneri, M.; Brand, J. Van den; Broeck, C. Van den; de Meent, M. van; Vanhove, P.; Varma, V.; Veitch, J.; Vercnocke, B.; Verde, L.; Vernieri, D.; Vernizzi, F.; Vicente, R.; Vidotto, F.; Visser, M.; Vlah, Z.; Vretinaris, S.; Völkel, S.; Wang, Q.; Wang, Yu-Tong; Werner, M. C.; Westernacher, J.; Weygaert, R. v. d.; Wiltshire, D.; Wiseman, T.; Wolf, P.; Wu, K.; Yamada, K.; Yang, H.; Yi, L.; Yue, X.; Yvon, D.; Zilhão, M.; Zimmerman, A.; Zumalacarregui, M.. - In: GENERAL RELATIVITY AND GRAVITATION. - ISSN 0001-7701. - 52:8(2020), pp. 1-33. [10.1007/s10714-020-02691-1]

Prospects for fundamental physics with LISA

Barausse, Enrico;Dima, A.;Franchini, N.;Liberati, S.;
2020-01-01

Abstract

In this paper, which is of programmatic rather than quantitative nature, we aim to further delineate and sharpen the future potential of the LISA mission in the area of fundamental physics. Given the very broad range of topics that might be relevant to LISA,we present here a sample of what we view as particularly promising fundamental physics directions. We organize these directions through a “science-first” approach that allows us to classify how LISA data can inform theoretical physics in a variety of areas. For each of these theoretical physics classes, we identify the sources that are currently expected to provide the principal contribution to our knowledge, and the areas that need further development. The classification presented here should not be thought of as cast in stone, but rather as a fluid framework that is amenable to change with the flow of new insights in theoretical physics.
2020
52
8
1
33
81
https://arxiv.org/abs/2001.09793
Barausse, Enrico; Berti, Emanuele; Hertog, Thomas; Hughes, Scott A.; Jetzer, Philippe; Pani, Paolo; Sotiriou, Thomas P.; Tamanini, Nicola; Witek, Helv...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/114069
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