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Nonassociative geometric and quantum information flows and R-flux deformations of wormhole solutions in string gravity

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arxiv 2402.10993 v1 pith:Z2NBE6J6 submitted 2024-02-16 hep-th gr-qcmath-phmath.MPquant-ph

classification hep-thgr-qcmath-phmath.MPquant-ph
keywords nonassociativequantuminformationgeometricgravityentropyclassicalconsidered
verification ladder T0 review T1 audit T2 compute T3 formal
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This article consists of an introduction to the theory of nonassociative geometric classical and quantum information flows defined by star products with R-flux deformations in string gravity. Corresponding nonassociative generalizations of the concepts of classical Shannon entropy, quantum von Neumann entropy, R\'{e}nyi entropy are formulated. The fundamental geometric and quantum information objects are computed following the Grigori Perelman statistical thermodynamic approach to Ricci flows and gravity theories generalized for phase spaces modelled as (co) tangent Lorentz bundles. Nonassociative parametric deformations and nonholonomic thermo-geometric versions of statistical generating functions, their quantum analogues as density matrices are considered for deriving the entropy, energy and fluctuation functionals. This allows us to define and compute respective classical and quantum relative and conditional entropies, mutual information and nonassociative entanglement and thermodynamic information variables. We formulate the principles of nonassociative quantum geometric and information flow theory, QGIF, and study the basic properties of such quasi-stationary models related to modified gravity theories. Applications are considered for nonassociative deformed and entangled couples of four-dimensional, 4-d, wormholes (defined by respective spacetime and/or momentum type coordinates) and nonassociative QGIFs of 8-d phase space generalized wormholes configurations. Finally, we speculate on phase space black holes and wormholes being transversable for nonassociative qubits, quantum channels and entanglement witness; thought and laboratory experiments are discussed; and perspectives for quantum computer modelling and tests of nonassociative geometric flow and gravity theories are considered.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Off-diagonal deformations of regular Schwarzschild black holes and general relativistic G. Perelman thermodynamics

    physics.gen-ph 2025-05 reject novelty 5.0 of 10

    The authors build off-diagonal deformations of regular Schwarzschild black holes and introduce Perelman-type geometric flow thermodynamic variables for them.

  2. Metric--Measure Geometry and Geometric Analogues of Holographic Extremal Surfaces

    physics.gen-ph 2026-07 reject novelty 2.0 of 10

    The paper re-derives the standard weighted-area condition H=(1/2)∂_n f and labels it a holographic analogue; the example scales are inserted through hand-chosen f.

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