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Gravitational waves from thermal heavy scalar dark matter

Published 29 Aug 2024 in hep-ph, astro-ph.HE, gr-qc, and hep-th | (2408.16475v3)

Abstract: We propose a gauge singlet scalar with mass around 1-100 TeV as a thermal heavy dark matter candidate along with a dilaton as a Higgs portal mediator in a dimensionless scalar extension of the Standard Model. We demonstrate analytically that such a model gives rise to very strong first-order electroweak phase transition through supercooling. We calculate the corresponding gravitational wave signals due to bubble collisions during the phase transition. The produced gravitational waves can be detected by future space-based gravitational wave detectors in the frequency range from 10{-4} Hz to 0.1 Hz.

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