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Multiverse Predictions for Habitability: Number of Potentially Habitable Planets

机译:可居住性的多元预测:潜在可居住行星的数量

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How good is our universe at making habitable planets? The answer to this depends on which factors are important for life: Does a planet need to be Earth mass? Does it need to be inside the temperate zone? are systems with hot Jupiters habitable? Here, we adopt different stances on the importance of each of these criteria to determine their effects on the probabilities of measuring the observed values of several physical constants. We find that the presence of planets is a generic feature throughout the multiverse, and for the most part conditioning on their particular properties does not alter our conclusions much. We find conflict with multiverse expectations if planetary size is important and it is found to be uncorrelated with stellar mass, or the mass distribution is too steep. The existence of a temperate circumstellar zone places tight lower bounds on the fine structure constant and electron to proton mass ratio.
机译:我们的宇宙在制造宜居行星方面有多好?答案取决于对生命重要的因素:行星是否需要成为地球质量?是否需要在温带区域内?木星高温的系统适合居住吗?在这里,我们对这些标准的重要性采用不同的立场,以确定它们对测量几个物理常数的观测值的概率的影响。我们发现行星的存在是整个宇宙中的一个普遍特征,而且在大多数情况下,以其特殊性质为条件不会对我们的结论产生太大影响。如果行星大小很重要,并且发现它与恒星质量不相关,或者质量分布太陡,我们就会发现与多宇宙期望有冲突。温带星际区的存在为精细结构常数和电子质子质量比提供了严格的下限。

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