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主要な著者: Ma, Haobo, Zhang, Wenlin
フォーマット: Recurso digital
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出版事項: Zenodo 2025
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オンライン・アクセス:https://doi.org/10.5281/zenodo.17693003
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author Ma, Haobo
Zhang, Wenlin
author_facet Ma, Haobo
Zhang, Wenlin
contents Standard quantum field theory explains the relation between spin and statistics through the spin--statistics theorem, derived from Lorentz covariance and microcausality on a continuous spacetime background. In topological approaches, the antisymmetry of fermionic wavefunctions can also be understood via the nontrivial topology of configuration spaces and associated line bundles, as in the Finkelstein--Rubinstein construction for solitons in nonlinear field theories. However, these frameworks typ
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spellingShingle Self-Referential Scattering and the Birth of Fermions: Riccati Square Roots, Spinor Double Cover, and a $\mathbb{Z
Ma, Haobo
Zhang, Wenlin
Unified Time Scale
Generalized Entropy
Quantum Scattering
General Relativity
Boundary Time Geometry
Causal Structure
Information Theory
Wigner-Smith Time Delay
Modular Flow
QNEC
Spectral Shift Function
Time Geometry
Standard quantum field theory explains the relation between spin and statistics through the spin--statistics theorem, derived from Lorentz covariance and microcausality on a continuous spacetime background. In topological approaches, the antisymmetry of fermionic wavefunctions can also be understood via the nontrivial topology of configuration spaces and associated line bundles, as in the Finkelstein--Rubinstein construction for solitons in nonlinear field theories. However, these frameworks typ
title Self-Referential Scattering and the Birth of Fermions: Riccati Square Roots, Spinor Double Cover, and a $\mathbb{Z
topic Unified Time Scale
Generalized Entropy
Quantum Scattering
General Relativity
Boundary Time Geometry
Causal Structure
Information Theory
Wigner-Smith Time Delay
Modular Flow
QNEC
Spectral Shift Function
Time Geometry
url https://doi.org/10.5281/zenodo.17693003