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On the relative velocity distribution for general statistics and an application to big-bang nucleosynthesis under Tsallis statistics

机译:关于普通统计的相对速度分布及Tsallis统计下的大熊核合成应用

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摘要

The distribution function of the relative velocity in a two-body reaction of nonrelativistic uncorrelated particles is derived for general cases of given distribution functions of single particle velocities. The distribution function is then used in calculations of thermonuclear reaction rates. As an example, we take the Tsallis non-Maxwellian distribution and show that the distribution function of the relative velocity is different from the Tsallis distribution. We identify an inconsistency in previous studies of nuclear reaction rates within Tsallis statistics and derive revised nuclear reaction rates. Utilizing the revised rates, accurate results of big bang nucleosynthesis are obtained for the Tsallis statistics. For this application, it is more difficult to reduce the primordial ~7Li abundance while keeping other nuclear abundances within the observational constraints. A small deviation from a Maxwell-Boltzmann distribution can increase the D abundance and slightly reduce ~7Li abundance. Although it is impossible to realize a ~7Li abundance at the level observed in metal-poor stars, a significant decrease is possible while maintaining a consistency with the observed D abundance.
机译:对于单颗粒速度的给定分布函数的一般情况,导出了非筛选非胶合颗粒的双体反应中相对速度的分布函数。然后用于计算热核反应速率的计算中。作为一个例子,我们采取Tsallis非最大威斯威尔分布,并表明相对速度的分布函数与Tsallis分布不同。我们确定了在Tsallis统计数据内核反应率的先前研究的不一致,并导出了修订后的核反应率。利用修订的速率,为Tsallis统计数据获得了大爆炸核酸合成的准确结果。对于本申请,更难以减少原始〜7LI丰度,同时保持观察限制内的其他核丰富。来自Maxwell-Boltzmann分布的小偏差可以增加D丰度并略微减少〜7Li丰度。尽管在金属差恒星中观察到的水平下不可能实现〜7LI丰度,但是可以显着降低,同时保持与观察到的D丰度的一致性。

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