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Nonextensive statistical effects on nuclear astrophysics

机译:对核天体物理学的统计影响不佳

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Density and temperature conditions in many stellar core (like the solar core) imply the presence of nonideal plasma effects with memory and long-range interactions between particles. This aspect suggests the possibility that the stellar core could not be in a global thermodynamical equilibrium but satisfies the conditions of a metastable state with a stationary (nonextensive) power law distribution function among ions. The order of magnitude of the deviation from the standard Maxwell-Boltzmann distribution can be derived microscopically by considering the presence of random electrical microfields in the stellar plasma. We show that such a nonextensive statistical effect can be very relevant in many nuclear astrophysical problems.
机译:许多恒星芯(如太阳核心)中的密度和温度条件意味着存在与颗粒之间的内存和远程相互作用的非藻血浆效应。这方面表明,恒星芯不可能在全球热力学平衡中的可能性,但满足了离子之间的静止(非夸张)电力法分布函数的稳定状态的条件。通过考虑恒星等离子体中的随机电微剥离,可以显微地导出与标准Maxwell-Boltzmann分布的偏差的量级。我们表明,在许多核天体物理问题中,这种偏出的统计效果可能非常相关。

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