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Article
Report number arXiv:1908.00366
Title Constraining graviton non-Gaussianity through the CMB bispectra
Author(s) De Luca, Valerio (Geneva U., CAP) ; Franciolini, Gabriele (Geneva U., CAP) ; Kehagias, Alex (Natl. Tech. U., Athens) ; Riotto, Antonio (Geneva U., CAP ; CERN) ; Shiraishi, Maresuke (Kagawa U.)
Publication 2019-09-25
Imprint 2019-08-01
Number of pages 8
Note 8 pages, 2 figures; version matching publication in PRD
In: Phys. Rev. D 100 (2019) 063535
DOI 10.1103/PhysRevD.100.063535 (publication)
Subject category hep-ph ; Particle Physics - Phenomenology ; gr-qc ; General Relativity and Cosmology ; astro-ph.CO ; Astrophysics and Astronomy
Abstract Tensor non-Gaussianities are a key ingredient to test the symmetries and the presence of higher spin fields during the inflationary epoch. Indeed, the shape of the three point correlator of the graviton is totally fixed by the symmetries of the de Sitter stage and, in the case of parity conservation, gets contributions only from the ordinary gravity action plus a higher derivative term called the (Weyl)$^3$ action. We discuss current and future bounds on the three point tensor contribution from the (Weyl)$^3$ term using cosmic microwave background (CMB) bispectra. Our results indicate that forthcoming experiments, such as LiteBIRD, CMB-S4 and CORE, will detect the presence of the (Weyl)$^3$ term if $M_p^4 L^4 \sim 10^{17} r^{-4}$, where $L$ parametrizes the strength of the (Weyl)$^3$ term and $r$ is the tensor-to-scalar ratio, which corresponds to $L\gtrsim 3.2 \times 10^5 M_p^{-1}$, while the current upper limit is $M_p^4 L^4 = (1.1 \pm 4.0) \times 10^{19} r^{-4}$ (68%CL).
Copyright/License preprint: (License: arXiv nonexclusive-distrib 1.0)
publication: © 2019-2024 authors (License: CC-BY-4.0)



Corresponding record in: Inspire


 Δημιουργία εγγραφής 2019-10-01, τελευταία τροποποίηση 2024-11-14


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