论文标题
重力产生的载体玻色子的BBN光分散限制
BBN Photodisintegration Constraints on Gravitationally Produced Vector Bosons
论文作者
论文摘要
在宇宙的通货膨胀和再加热期间,由于宇宙扩张引起的大量颗粒引力产生可能很重要。如果粒子还具有非重大相互作用不会显着影响其产量,则包括宇宙学探针在内的大量观察探针开放。在这项工作中,我们专注于轻巧与标准模型(SM)颗粒的轻度矢量玻色子的重力产生。由于耦合非常微弱,光矢量玻色子永远不会达到热平衡,如果通货膨胀结束时的哈勃尺度高于$ 10^8 $ GEV,则重力产生会通过许多数量级通过冻结机制来压倒热产生的热量。结果,与仅考虑热产生的情况相比,可以将大爆炸核合成(BBN)的限制更为强。例如,我们研究了Sub-GEV量表暗光子,仅通过动力学混合将其逐渐与SM融为一体,并从暗光子的质量和动力学混合参数受到质量分散效应的质量和动力学混合参数对BBN末端相关的光元素丰度的影响,当时宇宙时代左右是10^4美元左右。
Gravitational production of massive particles due to cosmic expansion can be significant during the inflationary and reheating period of the Universe. If the particle also has non-gravitational interactions that do not significantly affect its production, numerous observational probes open up, including cosmological probes. In this work, we focus on the gravitational production of light vector bosons that couple feebly to the Standard Model (SM) particles. Due to the very feeble coupling, the light vector bosons never reach thermal equilibrium, and if the Hubble scale at the end of inflation is above $10^8$ GeV, the gravitational production can overwhelm the thermal production via the freeze-in mechanism by many orders of magnitude. As a result, much stronger constraints from the Big Bang Nucleosynthesis (BBN) can be placed on the lifetime and mass of the vector bosons compared to the scenario where only thermal production is considered. As an example, we study the sub-GeV scale dark photons, which couple to the SM only through kinetic mixing, and derive constraints on the mass and kinetic mixing parameter of the dark photon from the photodisintegration effects on the light element abundances relevant at the end of the BBN when the cosmic age was around $10^4$ s.