Imprints of the operator ordering ambiguity on the dynamics of perfect fluid dominated quantum universe

Harkirat Singh Sahota
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Abstract

Sharply peaked quantum states are conjectured to be conducive to the notion of a quantum-corrected spacetime. We investigate this conjecture for a flat-FLRW model with perfect fluid, where a generalized ordering scheme is considered for the gravitational Hamiltonian. We study the implications of different ordering choices on the dynamics of the quantum universe. We demonstrate that the imprints of the operator ordering ambiguity are minimal, and quantum fluctuations are small in the case of sharply peaked states, leading to a consistent notion of a quantum-corrected spacetime defined via the expectation value of the scale factor. Surprisingly, the ordering imprints survive far away from the singularity through the quantum fluctuations in the quantum-corrected spacetime for broadly peaked states.
算子排序模糊性对完美流体主导量子宇宙动力学的影响
尖峰量子态被推测为有利于量子校正时空的概念。我们研究了具有完美流体的平面-FLRW 模型的这一猜想,其中考虑了引力哈密顿的广义排序方案。我们研究了不同排序选择对量子宇宙动力学的影响。我们证明了算子排序模糊性的影响是最小的,而且在尖峰态的情况下量子波动也很小,从而得出了通过尺度因子的期望值定义的量子校正时空的一致概念。令人惊奇的是,在远离奇点的地方,排序印记会通过量子校正时空中的量子波动而继续存在于广义峰值态中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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