Geometric Quantization by Paths Part II: The General Case

Fuente: arXiv
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Autore principale: Iglesias-Zemmour, Patrick
Natura: Preprint
Pubblicazione: 2025
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author Iglesias-Zemmour, Patrick
author_facet Iglesias-Zemmour, Patrick
contents In Part I, we established the construction of the Prequantum Groupoid for simply connected spaces. This second part extends the theory to arbitrary connected parasymplectic diffeological spaces $(\mathrm{X}, ω)$. We identify the obstruction to the existence of the Prequantum Groupoid as the non-additivity of the integration of the prequantum form $\mathbf{K}ω$ on the space of loops. By defining a Total Group of Periods $\mathrm{P}_ω$ directly on the space of paths, which absorbs the periods arising from the algebraic relations of the fundamental group, we construct a Prequantum Groupoid $\mathbf{T}_ω$ with connected isotropy isomorphic to the torus of periods $\mathrm{T}_ω= \mathbf{R}/\mathrm{P}_ω$. Furthermore, we propose that this groupoid $\mathbf{T}_ω$ constitutes the Quantum System itself. The classical space $\mathrm{X}$ is embedded as the Skeleton of units, surrounded by a Quantum Fog of non-identity morphisms. We prove that the group of automorphisms of the Quantum System is isomorphic to the group of symmetries of the Dynamical System, $\mathrm{Diff}(\mathrm{X}, ω)$.
format Preprint
id arxiv_https___arxiv_org_abs_2512_24627
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Geometric Quantization by Paths Part II: The General Case
Iglesias-Zemmour, Patrick
Differential Geometry
Primary 53D50, 58A05, Secondary 22A22, 55R65, 58A10
In Part I, we established the construction of the Prequantum Groupoid for simply connected spaces. This second part extends the theory to arbitrary connected parasymplectic diffeological spaces $(\mathrm{X}, ω)$. We identify the obstruction to the existence of the Prequantum Groupoid as the non-additivity of the integration of the prequantum form $\mathbf{K}ω$ on the space of loops. By defining a Total Group of Periods $\mathrm{P}_ω$ directly on the space of paths, which absorbs the periods arising from the algebraic relations of the fundamental group, we construct a Prequantum Groupoid $\mathbf{T}_ω$ with connected isotropy isomorphic to the torus of periods $\mathrm{T}_ω= \mathbf{R}/\mathrm{P}_ω$. Furthermore, we propose that this groupoid $\mathbf{T}_ω$ constitutes the Quantum System itself. The classical space $\mathrm{X}$ is embedded as the Skeleton of units, surrounded by a Quantum Fog of non-identity morphisms. We prove that the group of automorphisms of the Quantum System is isomorphic to the group of symmetries of the Dynamical System, $\mathrm{Diff}(\mathrm{X}, ω)$.
title Geometric Quantization by Paths Part II: The General Case
topic Differential Geometry
Primary 53D50, 58A05, Secondary 22A22, 55R65, 58A10
url https://arxiv.org/abs/2512.24627