论文标题

多组分相对论热化的模拟

Simulations of multicomponent relativistic thermalization

论文作者

Kedia, Atul, Sasankan, Nishanth, Mathews, Grant J., Kusakabe, Motohiko

论文摘要

数十年来已经研究了多分量相对论流体。但是,在这种混合物中模拟颗粒和流体的动力学已经成为一个挑战,因为这样的模拟在三个空间维度上在计算上昂贵。在这里,我们报告了多维相对论的蒙特卡洛代码的开发和应用,以在相对论的多组分环境中以计算廉价的方式探索热化过程。作为例证,我们模拟了相对论低质量颗粒(电子)浴中高质量颗粒(质子)的热质量颗粒(质子)的热质量的完全相对论的三维三维溶液。我们遵循大爆炸核合成期间宇宙等离子体中可能发生的像布朗一样粒子的热和最终平衡分布。我们还通过在大爆炸期间通过巨大的不稳定颗粒的衰减来模拟注入等离子体中的能量颗粒的热化。

Multicomponent relativistic fluids have been studied for decades. However, simulating the dynamics of the particles and fluids in such a mixture has been a challenge due to the fact that such simulations are computationally expensive in three spatial dimensions. Here, we report on the development and application of a multi dimensional relativistic Monte Carlo code to explore of the thermalization process in a relativistic multicomponent environment in a computationally inexpensive way. As an illustration we simulate the fully relativistic three dimensional Brownian-motion-like solution to the thermalization of a high mass particle (proton) in a bath of relativistic low-mass particles (electrons). We follow the thermalization and ultimate equilibrium distribution of the Brownian-like particle as can happen in the cosmic plasma during big bang nucleosynthesis. We also simulate the thermalization of energetic particles injected into the plasma as can occur, for example, by the decay of massive unstable particles during the big bang.

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