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Quantum cosmology of a conformal multiverse

机译:Quantum宇宙的共形富有

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This paper studies the cosmology of a homogeneous and isotropic spacetime endorsed with a conformally coupled massless scalar field. We find six different solutions of the Friedmann equation that represent six different types of universes, and all of them are periodically distributed along the complex time axis. From a classical point of view, they are then isolated, separated by Euclidean regions that represent quantum mechanical barriers. Quantum mechanically, however, there is a nonzero probability for the state of the universes to tunnel out through a Euclidean instanton and suffer a sudden transition to another state of the spacetime. We compute the probability of transition for this and other nonlocal processes like the creation of universes in entangled pairs and, generally speaking, in multipartite entangled states. We obtain the quantum state of a single universe within the formalism of the Wheeler-DeWitt equation and give the semiclassical state of the universes that describes the quantum mechanics of a scalar field propagating in a de Sitter background spacetime. We show that the superposition principle of the quantum mechanics of matter fields alone is an emergent feature of the semiclassical description of the universe that is not valid, for instance, in the spacetime foam. We use the third quantization formalism to describe the creation of an entangled pair of universes with opposite signs of the momentum conjugated to the scale factor. Each universe of the entangled pair represents an expanding spacetime in terms of the Wentzel-Kramers-Brillouin (WKB) time experienced by internal observers in their particle physics experiments. We compute the effective value of the Friedmann equation of the background spacetime of the two entangled universes, and thus, the effect that the entanglement would have in their expansion rates. We analyze as well the effects of the interuniversal entanglement in the properties of the scalar fields that propagate in each spacetime of the entangled pair. We find that the largest modes of the scalar field are unaware of the entanglement between the universes, but the effects can be significant for the lowest modes, allowing us to compute, in principle, detailed observational imprints of the multiverse in the properties of a single universe like ours.
机译:本文研究了具有共形耦合的无麻标量的均匀和各向同性时空的宇宙学。我们发现六种不同的解决方案的弗里德曼等式,代表六种不同类型的宇宙,并且所有这些都是沿复杂的时间轴分布的周期性。从经典的角度来看,然后被隔离,由欧几里德地区分开,所述欧几里德地区代表量子机械屏障。然而,Quantum机械地,通过欧几里德 - 液算子隧道隧道隧道隧道的状态存在非零概率,并且突然过渡到外星动脉的另一种状态。我们计算这种和其他非局部流程的过渡概率,如在缠绕的对中的宇宙中的创建,并且一般而言,在多分钟纠缠状态中。我们在轮车-Dewitt方程的形式主义内获得单个宇宙的量子状态,并给出了宇宙的半透明状态,所述宇宙中描述了在De Sitter背景时空传播的标量场的量子力学。我们表明,单独的物质领域的量子力学的叠加原理是宇宙的半思法描述的紧急特征,例如,例如在空间泡沫中。我们使用第三种量化形式主义来描述创建一个纠缠的一对宇宙,具有与规模因子缀合的势头相反的迹象。缠绕对的每个宇宙都代表了内部观察者在其粒子物理实验中所经历的vidzel-kramers-brillouin(wkb)时间的扩展时空。我们计算两个缠结宇宙的背景时期的Friedmann方程的有效值,因此,纠缠在扩展速率中的效果。我们为在缠绕对的每个时空中传播的标量字段的属性中分析了同时纠缠的影响。我们发现标量字段的最大模式是不知道宇宙之间的纠缠,但效果对于最低模式可能是重要的,允许我们原则上计算多个人的详细观察印记在单个的属性中宇宙喜欢我们的。

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  • 来源
    《Physical Review D》 |2017年第8期|063511.1-063511.21|共21页
  • 作者

    Salvador J. Robles-Perez;

  • 作者单位

    Instituto de Fisica Fundamental Consejo Superior de Investigaciones Cientificas Serrano 121 28006 Madrid Spain and Estacion Ecologica de Biocosmologia Pedro de Alvarado 14 06411-Medellin Spain;

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