宇宙学常数对超hecr粒子运动的影响

Shaoxia Chen, Zhe Chang
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引用次数: 1

摘要

最近的天文观测表明,宇宙中大约三分之二的能量是由一个小的正宇宙常数Λ(>0)贡献的。那么,一个渐近的德西特时空就自然得到了前提。然而,德西特时空中的物理学与闵可夫斯基时空中的物理学有很大的不同。作为第一步,本文给出了德西特时空中运动学的协变形式。通过精确地求解场的运动方程,我们得到了自由粒子的色散关系。注意到色散关系依赖于粒子角动量的自由度。我们证明了在德西特运动学框架下,超高能宇宙射线的阈值异常自然消失。
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Effects of cosmological constant on motion of UHECR particles
Recent astronomical observations manifest that about two-thirds of the whole energy in the Universe is contributed by a small positive cosmological constant Λ (>0). Then, an asymptotically de Sitter spacetime is premised naturally. However, physics in the de Sitter spacetime is very different from that in the Minkowski spacetime. As the first step, a covariant formalism of the kinematics in the de Sitter spacetime is presented here. By solving exactly the equations of motion for a field, we obtain the dispersion relation of a free particle. It is noticed that the dispersion relation is dependent on the degree of freedom of angular momentum of the particle. We show the threshold anomaly of the ultra high energy cosmic ray disappears naturally in the framework of the de Sitter kinematics.
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