CERN Accelerating science

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1.
LISA Definition Study Report / LISA Collaboration
The Laser Interferometer Space Antenna (LISA) is the first scientific endeavour to detect and study gravitational waves from space. [...]
arXiv:2402.07571.
- 155.
Fulltext
2.
Science prospects for LISA / Petiteau, Antoine (speaker) (CEA Saclay)
LISA (Laser Interferometer Space Antenna) is the future large mission by the European Space Agency aimed at observing the gravitational Universe. It was approved in 2017 following the success of the technological demonstrator LISAPathfinder and the detection of gravitational waves by ground-based observatories LIGO-Virgo [...]
2023 - 4135. Theory Colloquia External link: Event details In : Science prospects for LISA
3.
Overview and progress on the Laser Interferometer Space Antenna mission / Bayle, Jean-Baptiste (Glasgow U.) ; Bonga, Béatrice (Nijmegen U.) ; Caprini, Chiara (Geneva U. ; CERN) ; Doneva, Daniela (U. Tubingen ; Sofiya, Inst. Nucl. Res.) ; Muratore, Martina (Potsdam, Max Planck Inst. ; Trento U. ; INFN, Trento) ; Petiteau, Antoine (APC, Paris) ; Rossi, Elena (Leiden Observ.) ; Shao, Lijing (Peking U., Beijing, KIAA ; NAOC, Beijing)
At a Lorentz Center workshop, Chiara Caprini, Antoine Petiteau and Elena Maria Rossi gave a series of presentations about the Laser Interferometer Space Antenna (LISA) mission, the instrument, and the associated science in cosmology and astrophysics..
2022 - 5 p. - Published in : Nature Astron. 6 (2022) 1334-1338
4.
Cosmology with the Laser Interferometer Space Antenna / LISA Cosmology Working Group Collaboration
The Laser Interferometer Space Antenna (LISA) has two scientific objectives of cosmological focus: to probe the expansion rate of the universe, and to understand stochastic gravitational-wave backgrounds and their implications for early universe and particle physics, from the MeV to the Planck scale. However, the range of potential cosmological applications of gravitational wave observations extends well beyond these two objectives. [...]
arXiv:2204.05434; LISA CosWG-22-03; FERMILAB-PUB-22-349-SCD.- 2023-08-28 - 176 p. - Published in : Living Rev. Relativ. 26 (2023) 5 Fulltext: 2204.05434 - PDF; jt - PDF; Fulltext from Publisher: PDF; External link: Fermilab Library Server
5.
Unveiling the gravitational universe at $\mu$-Hz frequencies / Sesana, Alberto (Milan Bicocca U.) ; Korsakova, Natalia (Cote d'Azur Observ., Nice) ; Sedda, Manuel Arca (U. Heidelberg (main)) ; Baibhav, Vishal (Johns Hopkins U. (main)) ; Barausse, Enrico (SISSA, Trieste) ; Barke, Simon (U. Florida, Gainesville (main)) ; Berti, Emanuele (Johns Hopkins U. (main)) ; Bonetti, Matteo (Milan Bicocca U.) ; Capelo, Pedro R. (U. Zurich (main)) ; Caprini, Chiara (APC, Paris) et al.
We propose a space-based interferometer surveying the gravitational wave (GW) sky in the milli-Hz to $\mu$-Hz frequency range. By the 2040s', the $\mu$-Hz frequency band, bracketed in between the Laser Interferometer Space Antenna (LISA) and pulsar timing arrays, will constitute the largest gap in the coverage of the astrophysically relevant GW spectrum. [...]
arXiv:1908.11391.- 2021-09-04 - 28 p. - Published in : Exp. Astron. 51 (2021) 1333-1383 Fulltext: 1908.11391 - PDF; document - PDF;
6.
Laser Interferometer Space Antenna / LISA Collaboration
Following the selection of The Gravitational Universe by ESA, and the successful flight of LISA Pathfinder, the LISA Consortium now proposes a 4 year mission in response to ESA's call for missions for L3. [...]
arXiv:1702.00786.
- 2017. - 41 p.
Full text
7.
Science with the space-based interferometer LISA. IV: Probing inflation with gravitational waves / Bartolo, Nicola (Padua U. ; INFN, Padua ; Padua Observ.) ; Caprini, Chiara (APC, Paris) ; Domcke, Valerie (APC, Paris) ; Figueroa, Daniel G. (CERN) ; Garcia-Bellido, Juan (Madrid, IFT) ; Guzzetti, Maria Chiara (Padua U. ; INFN, Padua) ; Liguori, Michele (Padua U. ; INFN, Padua ; Padua Observ.) ; Matarrese, Sabino (Padua U. ; INFN, Padua ; Padua Observ. ; GSSI, Aquila) ; Peloso, Marco (Minnesota U.) ; Petiteau, Antoine (APC, Paris) et al.
We investigate the potential for the LISA space-based interferometer to detect the stochastic gravitational wave background produced from different mechanisms during inflation. Focusing on well-motivated scenarios, we study the resulting contributions from particle production during inflation, inflationary spectator fields with varying speed of sound, effective field theories of inflation with specific patterns of symmetry breaking and models leading to the formation of primordial black holes. [...]
arXiv:1610.06481; ACFI-T16-19; UMN-TH-3608-16; CERN-TH-2016-222; KCL-PH-TH-2016-58; IFT-UAM-CSIC-16-104.- 2016-12-14 - 63 p. - Published in : JCAP 12 (2016) 026 Fulltext: PDF; External link: Preprint

Смотрите также: похожие имена автора
7 Petiteau, A
4 Petiteau, A.
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