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Is the Quilted Multiverse Consistent with a Thermodynamic Arrow of Time?

机译:the缝的多元宇宙与时间的热力学箭头一致吗?

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Theoretical achievements, as well as much controversy, surround multiverse theory. Various types of multiverses, with an increasing amount of complexity, were suggested and thoroughly discussed in literature by now. While these types are very different, they all share the same basic idea: our physical reality consists of more than just one universe. Each universe within a possibly huge multiverse might be slightly or even very different from the others. The quilted multiverse is one of these types, whose uniqueness arises from the postulate that every possible event will occur infinitely many times in infinitely many universes. In this paper we show that the quilted multiverse is not self-consistent due to the instability of entropy decrease under small perturbations. We therefore propose a modified version of the quilted multiverse which might overcome this shortcoming. It includes only those universes where the minimal entropy occurs at the same instant of (cosmological) time. Only these universes whose initial conditions are fine-tuned within a small phase-space region would evolve consistently to form their "close"' states at present. A final boundary condition on the multiverse may further lower the amount of possible, consistent universes. Finally, some related observations regarding the many-worlds interpretation of quantum mechanics and the emergence of classicality are discussed.
机译:理论成就以及许多争议围绕着多元宇宙理论。迄今为止,各种类型的多元宇宙的复杂性不断提高,并在文献中得到了全面讨论。尽管这些类型非常不同,但它们都具有相同的基本思想:我们的物理现实不仅仅包含一个宇宙。一个可能巨大的多元宇宙中的每个宇宙都可能与其他宇宙稍有不同,甚至非常不同。缝的多元宇宙就是其中一种,其独特性源于以下假设:每个可能的事件将在无限多个宇宙中无限次发生。在本文中,我们表明由于小扰动下熵下降的不稳定性,the缝的多重宇宙不是自洽的。因此,我们提出了the缝多元宇宙的修改版本,它可以克服这一缺点。它仅包括在(宇宙学)时间的同一瞬间出现最小熵的那些宇宙。只有这些初始条件在一个较小的相空间区域内进行微调的宇宙,才能不断演化以形成它们目前的“接近”状态。多重宇宙上的最终边界条件可能会进一步降低可能的,一致的宇宙的数量。最后,讨论了有关量子力学的多世界解释和经典性出现的一些相关观察。

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