论文标题
通过从域壁的重力波探测高dirac瘦素发生
Probing High Scale Dirac Leptogenesis via Gravitational Waves from Domain Walls
论文作者
论文摘要
我们提出了一种探测高规模乳胶生成的新方法,这是一个可行的替代品的替代,可以保守整体Lepton数量,从而保持光标准模型(SM)中微子纯粹是Dirac。产生轻质狄拉克中微子的最简单的锯机构涉及沉重的单线迪拉克费米斯和单线标量。除了不间断的全球Lepton号码外,还强加了一个离散的$ Z_2 $对称性,以禁止在轻度Dirac Neutrino的左右手性部分之间直接耦合。生成光狄拉克中微子质量要求单线标量量获得真空期望值(VEV),这也打破了$ z_2 $对称性,从而导致早期宇宙中的域壁形成。这些墙壁通过引入软$ z_2 $打破术语而变得不稳定,会产生重力波(GW),其频谱的特征是墙壁张力或单线vev,以及柔和的对称性破坏量表。瘦素发生的规模取决于$ z_2 $的单线vev,这也导致了域壁的张力,影响了塌陷墙产生的GW振幅。我们发现,大多数近期的GW观测值都将能够探测Dirac Leptogenesewaseation量的规模,最高为$ 10^{11} $ GEV。
We propose a novel way of probing high scale Dirac leptogenesis, a viable alternative to canonical leptogenesis scenario where the total lepton number is conserved, keeping light standard model (SM) neutrinos purely Dirac. The simplest possible seesaw mechanism for generating light Dirac neutrinos involve heavy singlet Dirac fermions and a singlet scalar. In addition to unbroken global lepton number, a discrete $Z_2$ symmetry is imposed to forbid direct coupling between right and left chiral parts of light Dirac neutrino. Generating light Dirac neutrino mass requires the singlet scalar to acquire a vacuum expectation value (VEV) that also breaks the $Z_2$ symmetry, leading to formation of domain walls in the early universe. These walls, if made unstable by introducing a soft $Z_2$ breaking term, generate gravitational waves (GW) with a spectrum characterized by the wall tension or the singlet VEV, and the soft symmetry breaking scale. The scale of leptogenesis depends upon the $Z_2$-breaking singlet VEV which is also responsible for the tension of the domain wall, affecting the amplitude of GW produced from the collapsing walls. We find that most of the near future GW observatories will be able to probe Dirac leptogenesis scale all the way upto $10^{11}$ GeV.