论文标题

基于磁性单重的机制,用于形成热大爆炸的宇宙

A Magnetic-Monopole-Based Mechanism to the formation of the Hot Big Bang Modeled Universe

论文作者

Peng, Qiu-He, Liu, Jing-Jing, Chou, Chi-Kang

论文摘要

有一些粒子物理学理论超出了所谓的“标准宇宙学模型”,以预测磁性单极的存在\(MMS)。在高能物理学中发现磁性单孔将是一个令人难以置信的突破。从大统一理论中推测并预期了MMS在早期宇宙中的存在。如果存在MMS,则统一质量的逆权力不会抑制Baryon数字违反大统一理论的影响。因此,MM催化核子衰减是典型的强相互作用。这种现象是由于必须施加的边界条件在MM费疗场的核心上。我们提出了解释热爆炸宇宙学的形成的可能机制。我们模型中的主要成分是核子衰减是由磁性单翼催化的(即Rubakov-Callan效应)。结果表明,Hot Big Bang自然而然地发展出来,因为由于Rubakov-Callan效应引起的光度远远大于Eddington的发光度(即$ L_M> 10^4L _ {\ rm {\ rm {edd}} $)。

There are some particle physics theories that go beyond the so-called "standard cosmological model" to predict the existence of magnetic monopoles\,(MMs). The discovery of magnetic monopoles would be an incredible breakthrough in high-energy physics. The existence of MMs in the early Universe has been speculated and anticipated from Grand Unified Theory. If MMs exist, the inverse powers of the unification mass will not suppressed the baryon number violating effects of grand unified gauge theories. Therefore, MM catalyzing nucleon decay is a typical strong interaction. This phenomenon is due to the boundary conditions that must be imposed on the core of MM fermion fields. We present a possible mechanism to explain the formation of the Hot Big Bang Cosmology. The main ingredient in our model is nucleon decay catalyzed by magnetic monopoles (i.e., the Rubakov-Callan effect). It is shown that Hot Big Bang developed naturally, because the luminosity due to the Rubakov-Callan effect is much greater than the Eddington luminosity (i.e., $L_m>10^4L_{\rm{Edd}}$).

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