CERN Accelerating science

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1.
New horizons for fundamental physics with LISA / LISA Collaboration
The Laser Interferometer Space Antenna (LISA) has the potential to reveal wonders about the fundamental theory of nature at play in the extreme gravity regime, where the gravitational interaction is both strong and dynamical. In this white paper, the Fundamental Physics Working Group of the LISA Consortium summarizes the current topics in fundamental physics where LISA observations of GWs can be expected to provide key input. [...]
arXiv:2205.01597.- 2022-06-30 - 116 p. - Published in : Living Rev. Relativ. 25 (2022) 4 Fulltext: 2205.01597 - PDF; document - PDF;
2.
Prospects for Fundamental Physics with LISA / LISA Collaboration
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 directions, based in part on the current research interests of the LISA scientific community in the area of fundamental physics. [...]
arXiv:2001.09793.- 2020-08-31 - 22 p. Fulltext: PDF;
3.
The case for a directional dark matter detector and the status of current experimental efforts / Ahlen, S ; Afshordi, N ; Battat, J B R ; Billard, J ; Bozorgnia, N ; Burgos, S ; Caldwell, T ; Carmona, J M ; Cebrián, S ; Colas, P et al.
We present the case for a dark matter detector with directional sensitivity. This document was developed at the 2009 CYGNUS workshop on directional dark matter detection, and contains contributions from theorists and experimental groups in the field. [...]
arXiv:0911.0323.- 2010 - 48 p. - Published in : Int. J. Mod. Phys. A 25 (2010) 1-51 External link: Preprint
4.
Non-Gaussianity as a Probe of the Physics of the Primordial Universe and the Astrophysics of the Low Redshift Universe / Komatsu, E. (Texas U. ; Tokyo U.) ; Afshordi, N. (Perimeter Inst. Theor. Phys.) ; Bartolo, N. (Padua U.) ; Baumann, D. (Harvard U.) ; Bond, J.R. (Toronto U.) ; Buchbinder, E.I. (Perimeter Inst. Theor. Phys.) ; Byrnes, C.T. (Heidelberg U.) ; Chen, Xingang (MIT) ; Chung, D.J.H. (Wisconsin U., Madison) ; Cooray, A. (UC, Irvine) et al.
A new and powerful probe of the origin and evolution of structures in the Universe has emerged and been actively developed over the last decade. [...]
arXiv:0902.4759 ; CERN-PH-TH-2009-103.
- 2009. - 8 p.
Preprint - Full text

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