Gravitational wave imprint of new symmetry breaking |
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Authors: | Wei Chao Wen-Feng Cui Huai-Ke Guo Jing Shu |
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Affiliation: | 1. Center for Advanced Quantum Studies, Department of Physics, Beijing Normal University, Beijing 100875, China2. CAS Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 100190, China3. CAS Center for Excellence in Particle Physics, Beijing 100049, China4. School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100190, China |
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Abstract: | It is believed that there are more fundamental gauge symmetries beyond those described by the Standard Model of particle physics. The scales of these new gauge symmetries are usually too high to be reachable by particle colliders. Considering that the phase transition (PT) relating to the spontaneous breaking of new gauge symmetries to the electroweak symmetry might be strongly first order, we propose considering the stochastic gravitational waves (GW) arising from this phase transition as an indirect way of detecting these new fundamental gauge symmetries. As an illustration, we explore the possibility of detecting the stochastic GW generated from the PT of begin{document}$ {bf{B}}-{bf{L}}$end{document}![]() in the space-based interferometer detectors. Our study demonstrates that the GW energy spectrum is reachable by the LISA, Tianqin, Taiji, BBO, and DECIGO experiments only for the case where the spontaneous breaking of begin{document}$ {bf{B}}-{bf{L}}$end{document}![]() is triggered by at least two electroweak singlet scalars. |
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Keywords: | phase transition stochastic gravitational waves B–L |
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