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Kinematical Foundations of Loop Quantum Cosmology

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arxiv 1505.04400 v1 pith:PXWQIN2O submitted 2015-05-17 math-ph gr-qcmath.MP

classification math-phgr-qcmath.MP
keywords loopquantumcosmologyquantizationfoundationsgravitykinematicalmeasures
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abstract

First, we review the $C^\ast$-algebraic foundations of loop quantization, in particular, the construction of quantum configuration spaces and the implementation of symmetries. Then, we apply these results to loop quantum gravity, focusing on the space of generalized connections and on measures thereon. Finally, we study the realm of homogeneous isotropic loop quantum cosmology: once viewed as the loop quantization of classical cosmology, once seen as the symmetric sector of loop quantum gravity. It will turn out that both theories differ, i.e., quantization and symmetry reduction do not commute. Moreover, we will present a uniqueness result for kinematical measures. These last two key results have originally been due to Hanusch; here, we give drastically simplified and direct proofs.

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  1. New Loop Quantum Cosmology Modifications from Gauge-covariant Fluxes

    gr-qc 2019-08 conditional novelty 6.0 of 10

    Gauge-covariant flux corrections in loop quantum cosmology produce an asymmetric quantum bounce with a (2/pi)^4 rescaling of Newton's constant in the pre-bounce branch.

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