Lecture Notes in Loop Quantum Gravity. LN3: Boundary equations for Ashtekar-Barbero-Immirzi model

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Autori principali: Fatibene, L., Orizzonte, A.
Natura: Preprint
Pubblicazione: 2025
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author Fatibene, L.
Orizzonte, A.
author_facet Fatibene, L.
Orizzonte, A.
contents We shall here perform the canonical analysis of field equations of ABI model in order to determine constraint equations. We shall show that one can use algebraic constraints in the covariant framework to fix $k^i$ as a function of the frame and obtain a model where $(A^i_a, E_i^a)$ is a pair of independent fields which are also a pair of conjugated fields. We shall not impose any relation on Immirzi parameter $β$ and Holst parameter $γ$, still constraint equations will depend on $β$ only and they agree with standard result of LQG which are obtained by a suitable canonical transformation on a leaf of the ADM foliation used to define a Hamiltonian framework. We eventually state the scheme for quantization that will be discussed in the following lecture notes.
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id arxiv_https___arxiv_org_abs_2506_06510
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Lecture Notes in Loop Quantum Gravity. LN3: Boundary equations for Ashtekar-Barbero-Immirzi model
Fatibene, L.
Orizzonte, A.
General Relativity and Quantum Cosmology
We shall here perform the canonical analysis of field equations of ABI model in order to determine constraint equations. We shall show that one can use algebraic constraints in the covariant framework to fix $k^i$ as a function of the frame and obtain a model where $(A^i_a, E_i^a)$ is a pair of independent fields which are also a pair of conjugated fields. We shall not impose any relation on Immirzi parameter $β$ and Holst parameter $γ$, still constraint equations will depend on $β$ only and they agree with standard result of LQG which are obtained by a suitable canonical transformation on a leaf of the ADM foliation used to define a Hamiltonian framework. We eventually state the scheme for quantization that will be discussed in the following lecture notes.
title Lecture Notes in Loop Quantum Gravity. LN3: Boundary equations for Ashtekar-Barbero-Immirzi model
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2506.06510