论文标题

Majoraana中微子和可钟形的Yukawa联轴器对稀有的Leptonic Decay $ L_ {i} \ Rightarrow l_ {J}γ$,发条光光子和发条graviton

Majorana Neutrinos and Clockworked Yukawa Couplings contribution to non-observation of the rare leptonic decay $ l_{i}\rightarrow l_{j} γ$, Clockwork Photon and Clockwork Graviton

论文作者

Ghosh, Gayatri

论文摘要

发条是一种额外的设置,用于生成具有指数抑制或分层的光颗粒的光颗粒,其n个巨大状态在理论中具有可比质量的n个巨大质量,在理论的阈值范围附近,在基本水平上不包含小参数。我们在发条框架中探索了充电Lepton侵犯侵犯(CLFV)的前景,该框架框于狄拉克的质量术语以及新发条式费米子的Majorana质量术语。在发条框架中,我们在发条框架和Yukawa耦合中与Lepton Doublets的Yukawa耦合中的新粒子相比,在发条参数是通用的框架中。当新的发条主要质量非零时,中微子肿块是由于右手iSO $ $ - $ singlet中微子或ISO $ - $ $ - $三胞胎标量玻色子的交换而产生的中微子质量。对于非零发条的主要质量,由于较高的质量模式的有效有效的Yukawa耦合中性中微子质量只能通过猜测所有发条齿轮的Teraelectron Volt范围内的大型Majorana质量来使其变得很小。从稀有CLFV衰变$μ\ rightArroweγ$,$τ\rightarrowμγ$,$τ\ rightarroweγ$的质量尺度上的约束可以看出这一点很明显。这里讨论了对费米子,仪表玻色子和重力的有效发条机制的一般描述。该机制可以通过一组离散的新字段或在其连续版本中通过额外的空间维度实现。

The clockwork is an extra-dimensional set-up for generating light particles with exponentially suppressed or hierarchical couplings of light particles with N massive states having comparable masses near the threshold scale of the mechanism in theories which contain no small parameters at the fundamental level. We explore the prospect of charged lepton flavour violation (cLFV) in a clockwork framework which encompasses Dirac mass terms as well as Majorana mass terms for the new clockwork fermions. We deive the masses of the non zero clockwork Majorana masses, and new particles in a clockwork framework and for their Yukawa couplings to the lepton doublets, in the framework where the clockwork parameters are universal. When the new clockwork Majorana masses are non zero, neutrino masses are generated as a result from the exchange of heavy messenger particles such as right handed iso$-$singlet neutrinos or iso$ - $triplet scalar bosons known as the seesaw mechanism. In the case of non zero clockwork Majorana masses, owing to the sizable effective Yukawa couplings of the higher mass modes neutrino masses can only be made tiny by conjecturing large Majorana mass in the teraelectron volt range for allthe clockwork gears. This is apparent from the constraints on the mass scale of the clockwork fermions due to the non-observation of the rare cLFV decay $ μ\rightarrow eγ$, $ τ\rightarrow μγ$, $ τ\rightarrow eγ$. A general description of the clockwork mechanism valid for fermions, gauge bosons, and gravitons is discussed here. This mechanism can be implemented with a discrete set of new fields or, in its continuum version, through an extra spatial dimension.

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