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Switching Internal Times and a New Perspective on the ‘Wave Function of the Universe’

机译:转换内部时间和“宇宙的波动功能”的新视角

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Despite its importance in general relativity, a quantum notion of general covariance has not yet been established in quantum gravity and cosmology, where, given the a priori absence of coordinates, it is necessary to replace classical frames with dynamical quantum reference systems. As such, quantum general covariance bears on the ability to consistently switch between the descriptions of the same physics relative to arbitrary choices of quantum reference system. Recently, a systematic approach for such switches has been developed. It links the descriptions relative to different choices of quantum reference system, identified as the correspondingly reduced quantum theories, via the reference-system-neutral Dirac quantization, in analogy to coordinate changes on a manifold. In this work, we apply this method to a simple cosmological model to demonstrate how to consistently switch between different internal time choices in quantum cosmology. We substantiate the argument that the conjunction of Dirac and reduced quantized versions of the theory defines a complete relational quantum theory that not only admits a quantum general covariance, but, we argue, also suggests a new perspective on the ‘wave function of the universe’. It assumes the role of a perspective-neutral global state, without immediate physical interpretation that, however, encodes all the descriptions of the universe relative to all possible choices of reference system at once and constitutes the crucial link between these internal perspectives. While, for simplicity, we use the Wheeler-DeWitt formulation, the method and arguments might be also adaptable to loop quantum cosmology.
机译:尽管它在广义相对论中很重要,但在量子引力和宇宙学中尚未建立广义协方差的量子概念,在这种情况下,鉴于先验缺乏坐标,有必要用动态量子参考系统代替经典框架。这样,相对于量子参考系统的任意选择,量子一般协方差具有在相同物理学的描述之间一致切换的能力。最近,已经开发了用于这种开关的系统方法。它通过与参考系统无关的Dirac量化,将与相对不同的量子参考系统选择相关的描述链接在一起,这些描述被标识为相应还原的量子理论,以类似方式协调流形上的变化。在这项工作中,我们将此方法应用于简单的宇宙学模型,以演示如何在量子宇宙学中的不同内部时间选择之间始终如一地切换。我们证实以下论点:狄拉克理论和简化的量子化形式的结合定义了一个完整的关系量子理论,该理论不仅接受了量子的一般协方差,而且还提出了关于“宇宙的波函数”的新观点。 。它承担了与视角无关的全局状态的作用,而没有立即的物理解释,然而,它立即对所有相对于参考系统的所有可能选择的描述进行了编码,并构成了这些内部视角之间的关键链接。虽然为简单起见,我们使用Wheeler-DeWitt公式,但该方法和参数可能也适用于循环量子宇宙学。

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