Many Worlds and the Vacuum Energy Problem

Hollis Williams
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Abstract

We suggest that it might be possible to resolve the vacuum energy problem by assuming the reality of a many worlds interpretation of quantum mechanics. The suggested resolution is that the enormous theoretical prediction for the vacuum energy density is actually the value distributed across all the parallel universes in a superposition. It is assumed that branching of all the universes into a larger superposition is a physical process which is extremely rare, but which has occurred sufficiently often since the Big Bang that the discrepancy for the experimentally measured value of the energy density can be explained.
多世界和真空能量问题
我们建议,通过假设量子力学的多世界解释的现实,有可能解决真空能量问题。建议的解决方案是,对真空能量密度的巨大理论预测实际上是在叠加状态下分布在所有平行宇宙中的值。人们假定,所有宇宙的分支形成一个更大的叠加态是一个极其罕见的物理过程,但自大爆炸以来,这种物理过程发生得足够频繁,以至于实验测量的能量密度值的差异可以解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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发文量
18
审稿时长
3 weeks
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