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Lorentzian vacuum transitions: Open or closed universes?

机译:Lorentzian真空过渡:开放式或封闭式宇宙?

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We consider the generalization of quantum tunneling transitions in the WKB approximation to the time-independent functional Schr?dinger and Wheeler-DeWitt equations. Following a Lorentzian approach, we compute the transition rates among different scalar field vacua and compare with those performed by Coleman and collaborators using the Euclidean approach. For gravity, we develop a general formalism for computing transition rates in Wheeler’s superspace. This is then applied to computing decays in flat space and then to transitions in the presence of gravity. In the latter case we point out the complexities arising from having nonpositive definite kinetic terms illustrating them in the simplified context of minisuperspace. This corresponds to a generalization of the well-known ‘tunneling from nothing’ scenarios. While we can obtain the leading term for the transitions obtained by Euclidean methods we also point out some differences and ambiguities. We show that there is no obstruction to keeping the spherically ( S O ( 4 ) ) symmetric closed slicing for the new vacuum after a de Sitter to de Sitter transition. We argue that this is the natural Lorentzian realization of the Coleman-De Luccia instanton and that a closed universe is also obtained if the mini-superspace assumption is relaxed. This is contrary to the open universe predicted by Coleman–De Luccia which relies on an analytic continuation performed after bubble nucleation. Our findings may have important cosmological implications related to the origin of inflation and to the string landscape. In particular, they question the widespread belief that evidence for a closed universe would rule out the string landscape.
机译:我们考虑在WKB近似下的量子隧道转换的概括到时间独立的功能SCHR?Dinger和Wheeler-dewitt方程。在Lorentzian方法之后,我们计算不同标量场的过渡率,并与Coleman和合作者使用欧几里德方法进行的那些进行比较。为了重力,我们为惠勒超空间计算过渡速率的一般形式主义。然后将其应用于扁平空间中的计算衰减,然后在重力的情况下转换。在后一种情况下,我们指出了具有在简化的MiniSuperspace中说明它们的非积极明确动力学术语所产生的复杂性。这对应于众所周知的“隧道从无到不自”情景的概括。虽然我们可以获得欧几里德方法获得的过渡的领先术语,但我们也指出了一些差异和含糊不清。我们表明,在DE空间后,没有阻碍球体(S O(4))对称的闭合切片,在DE保姆到DE STETTER转换后的新真空。我们认为这是Coleman-de Luccia Instanton的自然洛伦兹实现,并且如果放宽迷你超空间假设,也可以获得封闭的宇宙。这与Coleman-de Luccia预测的开放宇宙相反,脂肪癌在泡沫成核后依赖于分析延续而依赖于分析延续。我们的发现可能具有与通货膨胀起源和弦景观有关的重要宇宙主义影响。特别是,他们质疑普遍的信念,即封闭宇宙的证据会排除字符串景观。

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