论文标题

介质粒子在阈值中的衰减

Decay of the Mediator Particle at Threshold

论文作者

Matsumoto, Shigeki, Watanabe, Yu, Watanabe, Yuki, White, Graham

论文摘要

在黑暗扇区情景中通常会预测光中介粒子,该粒子与标准模型(SM)颗粒弱相互作用。相互作用的弱点通常是通过小耦合来描述的。但是,小耦合并不总是保证相互作用的弱点。当中介粒子的质量位于阈值区域时,可能会出现所谓的阈值奇异性,然后扰动计算失败。这种奇异性会引起几种效果,例如,介体粒子和结合状态之间的混合,sommerfeld对介体粒子衰变的最终状态等的效果。以矢量介体粒子的最小模型为例,我们主要以示例为例,我们开发了一种描述单数定量性的方法。我们还使用这种方法(例如介体粒子的寿命)来计算一些物理量,并发现与扰动计算结果相比,这些物理量可以显着改变。

A light mediator particle is often predicted in the dark sector scenario, which weakly interacts with the standard model (SM) particles. The weakness of the interaction is usually described by a small coupling; however, the small coupling does not always guarantee the weakness of the interaction. When the mass of the mediator particle lies in a threshold region, the so-called threshold singularity may emerge, and then the perturbative calculation fails. This singularity causes several effects, e.g., the mixing between the mediator particle and bound states, the Sommerfeld effect on the final state of the mediator particle decay, etc. Taking the minimal model of the vector mediator particle decaying mainly into the SM particles as an example, we develop a method to describe the singularity quantitatively. We also calculate some physical quantities using this method, such as the lifetime of the mediator particle, and find that those could be significantly altered compared with the result of the perturbative calculation.

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