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On Generalised Statistical Equilibrium and Discrete Quantum Gravity (Springer Theses)

✍ Scribed by Isha Kotecha


Publisher
Springer
Year
2022
Tongue
English
Leaves
194
Edition
1st ed. 2022
Category
Library

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✦ Synopsis


Absolute concepts of time and energy are integral to standard thermal physics, but background independent systems are devoid of them. This thesis explores the foundational question of generalising equilibrium statistical mechanics to background independent systems, and applies the resulting formulation to non-perturbative discrete quantum gravity. It offers a discussion of the rich interface of thermal physics and quantum gravity in this context, providing a broad contextualisation of such topics. This work details how standard tools from many-body physics can be generalised to discrete quantum gravity labelledΒ with graph-based, or dual polyhedral, quanta that are common to various approaches likeΒ tensorial group field theory, loop quantum gravity, dynamical triangulations and lattice quantum gravity. It provides a systematic investigation, both conceptual and technical, of quantum gravitational Gibbs states, thermofield double vacuum states, and their application in condensate cosmology to probe questions of Big Bang singularity resolution and geometric inflation.


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