论文标题

与骨质物质的环路量子重力的宇宙学部门的正则化以及量子校正的一般协方差的相关问题

Regularization of the cosmological sector of loop quantum gravity with bosonic matter and the related problems with general covariance of quantum corrections

论文作者

Bilski, Jakub

论文摘要

本文涉及有关在循环量子重力框架中定义的哈密顿约束物质领域的不同晶格正则技术的问题。该分析是在规范量子相对论假设理论的相空间降低宇宙学模型中提出的。本文解释了为什么与链接相关的晶体涂片不同导致当地违反一般协方差的行为。例如,假设与节点相关的涂抹而发生这种情况。因此,此问题发生在任何聚合物样标量场量化方法中,通过打破半经典预测的背景独立性。因此,取决于链接分布的差异对称性在通常相对论校正的水平下在本地破坏。此外,通过使用相位空间降低的量规固定技术来分析此问题,结果是一般的,并且与链接调节的循环量子重力的自由度相关。因此,它们导致以下无关结论。物质的任何格子涂抹,未通过使用Links-Fluxes二元性指定的几何分布来定义的任何晶格涂抹,都违反了相对论的一般原理。

This article concerns the problems regarding different lattice regularization techniques for the matter fields of Hamiltonian constraints defined in the framework of loop quantum gravity. The analysis is formulated in the phase space-reduced cosmological model of the hypothetical theory of canonical quantum general relativity. This article explains why a different than links-related lattice smearing of fields leads to a local violation of general covariance. This happens by assuming, for instance, the nodes-related smearing. Therefore, this problem occurs in the case of any polymerlike scalar field quantization method by breaking the background independence of the semiclassical predictions. In consequence, the diffeomorphism symmetry that depends on a links distribution is broken locally at the level of generally relativistic corrections. Moreover, by using the phase space-reduced gauge fixing technique to analyze this issue, the results are general and they concern any coupling with the links-regularized gravitational degrees of freedom in loop quantum gravity. Therefore, they lead to the following no-go conclusion. Any lattice smearing of matter, not defined by using the geometrical distribution specified by the links-fluxes duality, violates the general principle of relativity.

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