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Universal gravitational-wave signatures from heavy new physics in the electroweak sector

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journal contribution
posted on 2023-06-10, 00:48 authored by Astrid Eichhorn, Johannes Lumma, Jan M Pawlowski, Manuel ReichertManuel Reichert, Masatoshi Yamada
We calculate the gravitational-wave spectra produced by the electroweak phase transition with TeV-scale Beyond-Standard-Model physics in the early universe. Our study captures the effect of quantum and thermal fluctuations within a non-perturbative framework. We discover a universal relation between the mean bubble separation and the strength parameter of the phase transition, which holds for a wide range of new-physics contributions. The ramifications of this result are three-fold: first, they constrain the gravitational-wave spectra resulting from heavy (TeV-scale) new physics. Second, they contribute to distinguishing heavy from light new physics directly from the gravitational-wave signature. Third, they suggest that a concerted effort of gravitational-wave observations together with collider experiments could be required to distinguish between different models of heavy new physics.

Funding

Science and Technology Research Council; 10.1088/1475-7516/2021/05/006

History

Publication status

  • Published

File Version

  • Accepted version

Journal

Journal of Cosmology and Astroparticle Physics

ISSN

1475-7516

Publisher

IOP Publishing

Issue

5

Volume

2021

Article number

a006

Department affiliated with

  • Physics and Astronomy Publications

Research groups affiliated with

  • Theoretical Particle Physics Research Group Publications

Full text available

  • Yes

Peer reviewed?

  • Yes

Legacy Posted Date

2021-08-31

First Open Access (FOA) Date

2022-05-04

First Compliant Deposit (FCD) Date

2021-08-27

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