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The physical origin of the cosmological constant: continuum limit and the analogy with the Casimir effect

机译:宇宙学常数的物理来源:连续统计和类比亚效应的类比

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In this paper we continue the investigations in (Viaggiu 2018 Class. Quantum Gray. 35 215011) concerning the origin of the cosmological constant. First of all, we generalize the results in (Viaggiu 2018 Class. Quantum Gray. 35 215011, Buchdahl 1970 Mon. Not. R. Astron. Soc. 1501) by considering a continuum approximation for a radiation field in a cosmological background. In this way, we clearly show that the bare cosmological constant is obtained with wanishing temperature T and that the specific heat C is zero at the decoherence scale L-D. Moreover, we address the issue to fix the parameters present in our model. In particular, we push forward the analogy between our expression for Lambda(L) at a given proper scale L and the one extrapolated by the Casimir effect. As a consequence, we can fix the decoherence scale L-D at which we have the crossover to classicality to be of the order of similar to 10(-5) m. This implies that the actual observed value of the cosmological constant is fixed (frozen) at this new physical scale.
机译:在本文中,我们继续在(Viaggiu 2018级。Quantum Gray.35 215011)关于宇宙学常数的起源。首先,我们概括了(Viaggiu 2018类的结果。量子灰色。35 215011,Buchdahl 1970 Mon.不是。R. Astron。Soc.1501)通过考虑宇宙学背景中的辐射场的连续近似。以这种方式,我们清楚地表明,通过破坏温度T获得裸宇宙常数,并且特定的热C在脱机量表L-D处为零。此外,我们解决了解决模型中存在的参数的问题。特别是,我们在给定适当的规模L和通过Casimir效应外推开的λ(L)之间的表达之间推动了对Lambda(L)的表达之间的类比。因此,我们可以修复我们将交叉分叉到古典的脱机量表L-D,以与10(-5)m类似的顺序。这意味着宇宙学常量的实际观察值在这种新的物理规模处固定(冷冻)。

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