Limiting majoron self-interactions from gravitational wave experiments
Limiting majoron self-interactions from gravitational wave experiments作者机构:Department of Physics & Center for Field Theory and Particle Physics Fudan University
出 版 物:《Chinese Physics C》 (中国物理C(英文版))
年 卷 期:2018年第42卷第2期
页 面:64-70页
核心收录:
学科分类:0709[理学-地质学] 07[理学] 0708[理学-地球物理学] 0804[工学-仪器科学与技术] 0827[工学-核科学与技术] 0703[理学-化学] 0704[理学-天文学] 070202[理学-粒子物理与原子核物理] 0702[理学-物理学]
基 金:Supported by the Shanghai Municipality,through the grant No.KBH1512299 by Fudan University,through the grant No.JJH1512105
主 题:lepton/baryon number violation majorons gravitational waves colliders
摘 要:We show how majoron models may be tested/limited in gravitational wave experiments. In particular,the majoron self-interaction potential may induce a first order phase transition, producing gravitational waves from bubble collisions. We dub such a new scenario the violent majoron model, because it would be associated with a violent phase transition in the early Universe. Sphaleron constraints can be avoided if the global U(1)_(B-L) is broken at scales lower than the electroweak scale, provided that the B-L spontaneously breaking scale is lower than10 TeV in order to satisfy the cosmological mass density bound. The possibility of a sub-electroweak phase transition is practically unconstrained by cosmological bounds and it may be detected within the sensitivity of the next generation of gravitational wave experiments: eLISA, DECIGO and BBO. We also comment on its possible detection in the next generation of electron-positron colliders, where majoron production can be observed from the Higgs portals in missing transverse energy channels.