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Cosmological perturbations in the entangled inflationary universe

机译:纠结通货膨胀宇宙中的宇宙扰动

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In this paper, the model of a multiverse made up of universes that are created in entangled pairs that conserve the total momentum conjugated to the scale factor is presented. For the background spacetime, assumed is a Friedmann-Robertson-Walker metric with a scalar field with mass m minimally coupled to gravity. For the fields that propagate in the entangled spacetimes, the perturbations of the spacetime and the scalar field, whose quantum states become entangled too, are considered. They turn out to be in a quasithermal state, and the corresponding thermodynamical magnitudes are computed. Three observables are expected to be caused by the creation of the universes in entangled pairs: a modification of the Friedmann equation because of the entanglement of the spacetimes, a modification of the effective value of the potential of the scalar field by the backreaction of the perturbation modes, and a modification of the spectrum of fluctuations because the thermal distribution is induced by the entanglement of the partner universes. The later would be a distinctive feature of the creation of universes in entangled pairs.
机译:在本文中,介绍了由缠绕对中创建的宇宙组成的多层模型,这些对具有节省与比例因子的总动量的缠绕对。对于背景时尚,假设是一个弗里曼 - 罗伯逊 - 沃克公制,具有标量场,质量m微小地耦合到重力。对于在缠绕的空间传播的领域,考虑了时尚和标量场的扰动,其量子态也被缠绕在一起。它们结果在Quasthermal状态下,计算相应的热力学幅度。预计三个可观察到是由缠绕对中的宇宙创建的:由于空间的缠结,弗里曼方程的修改,通过对扰动反应来修改标量场的潜力的有效值模式,以及波动谱的修改,因为通过伴侣宇宙的纠缠引起了热分布。后来将成为创建缠绕对中的宇宙的独特特征。

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