Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings

Fuente: arXiv
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Main Authors: Guan, Shuo, Guo, Huai-Ke, Jiao, Dian, Liang, Qingyuan, Wu, Lei, Zhang, Yang
Format: Preprint
Published: 2025
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author Guan, Shuo
Guo, Huai-Ke
Jiao, Dian
Liang, Qingyuan
Wu, Lei
Zhang, Yang
author_facet Guan, Shuo
Guo, Huai-Ke
Jiao, Dian
Liang, Qingyuan
Wu, Lei
Zhang, Yang
contents In this work, we demonstrate the complete process of using space-based gravitational wave detectors to measure properties of the stochastic gravitational wave background arising from a first-order electroweak phase transition. Based on frequency-domain simulations of the Taiji mission, including instrumental noise and astrophysical foregrounds, we perform parameter inference using both the Fisher information matrix and Bayesian Markov Chain Monte Carlo sampling. We show how the reconstructed spectrum constrains the macroscopic parameters of the phase transition, and further how these constraints map onto the underlying particle-physics parameters in a singlet-extended Standard Model. Our results demonstrate that the Higgs cubic and quartic self-couplings can be significantly constrained using gravitational wave observations, despite limitations arising from parameter degeneracy.
format Preprint
id arxiv_https___arxiv_org_abs_2511_00996
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings
Guan, Shuo
Guo, Huai-Ke
Jiao, Dian
Liang, Qingyuan
Wu, Lei
Zhang, Yang
High Energy Physics - Phenomenology
In this work, we demonstrate the complete process of using space-based gravitational wave detectors to measure properties of the stochastic gravitational wave background arising from a first-order electroweak phase transition. Based on frequency-domain simulations of the Taiji mission, including instrumental noise and astrophysical foregrounds, we perform parameter inference using both the Fisher information matrix and Bayesian Markov Chain Monte Carlo sampling. We show how the reconstructed spectrum constrains the macroscopic parameters of the phase transition, and further how these constraints map onto the underlying particle-physics parameters in a singlet-extended Standard Model. Our results demonstrate that the Higgs cubic and quartic self-couplings can be significantly constrained using gravitational wave observations, despite limitations arising from parameter degeneracy.
title Measuring gravitational wave spectrum from electroweak phase transition and Higgs self-couplings
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2511.00996