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Autore principale: Khan, Koffka
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2504.07900
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author Khan, Koffka
author_facet Khan, Koffka
contents We develop a theoretical framework that unifies concepts of multiple time dimensions, quantum shortcut dynamics, and complex topological structures ('supermazes') to explore novel phenomena in quantum and classical systems. In particular, we introduce a Temporal Tensor Formalism to describe multidimensional time, define Quantum Shortcut Operators that enact near-instantaneous state transitions, and incorporate these into a supermaze topological model inspired by labyrinthine geometry and network complexity. We show how this framework can give rise to surprising effects such as anomalous thermodynamic relaxation (analogous to the Mpemba effect) in quantum systems. Theoretical implications for quantum computing (including quantum cloud networks) are discussed, and connections are drawn to established mathematical paradoxes and physical principles.
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id arxiv_https___arxiv_org_abs_2504_07900
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publishDate 2025
record_format arxiv
spellingShingle Temporal Tensors and Quantum Shortcut Dynamics in a Supermaze of Multidimensional Time
Khan, Koffka
Quantum Physics
Emerging Technologies
14J60 (Primary) 14F05, 14J26 (Secondary)
F.2.2; I.2.7; I.2.8
We develop a theoretical framework that unifies concepts of multiple time dimensions, quantum shortcut dynamics, and complex topological structures ('supermazes') to explore novel phenomena in quantum and classical systems. In particular, we introduce a Temporal Tensor Formalism to describe multidimensional time, define Quantum Shortcut Operators that enact near-instantaneous state transitions, and incorporate these into a supermaze topological model inspired by labyrinthine geometry and network complexity. We show how this framework can give rise to surprising effects such as anomalous thermodynamic relaxation (analogous to the Mpemba effect) in quantum systems. Theoretical implications for quantum computing (including quantum cloud networks) are discussed, and connections are drawn to established mathematical paradoxes and physical principles.
title Temporal Tensors and Quantum Shortcut Dynamics in a Supermaze of Multidimensional Time
topic Quantum Physics
Emerging Technologies
14J60 (Primary) 14F05, 14J26 (Secondary)
F.2.2; I.2.7; I.2.8
url https://arxiv.org/abs/2504.07900