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March 15, 20260 citationsOpen Access

Complex Time Quantum Thermal Geometry: A Unified Holomorphic Framework for Dynamics and Thermodynamics

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YLY. Li

Key Points

  • The study aims to derive a master equation that integrates quantum dynamics, thermal effects, and Riemannian geometry.
  • Derivation of a master equation from first principles
  • Extension of the temporal parameter into the complex domain
  • Correction of dimensional inconsistencies
  • Derivation of a unique coupling constant
  • Analysis of the KMS condition in thermal field theory
  • Introduction of the Complex Time Quantum Thermal Geometric (CTQTG) equation
  • Prediction of gravity-induced decoherence
  • Establishment of a fundamental ultraviolet regularization of momentum states at finite temperatures

Abstract

We present a first-principles derivation of a master equation that unifies quantum dynamics, thermal effects, and Riemannian geometry within a holomorphic framework. By extending the temporal parameter into the complex domain = t + i2kB T, we demonstrate that the KMS condition in thermal field theory necessitates a specific form of evolution. We correct previous dimensional inconsistencies and derive the unique coupling constant = G / c, which links the Laplace-Beltrami operator to complex time evolution. The resulting Complex Time Quantum Thermal Geometric (CTQTG) equation predicts gravity-induced decoherence and a fundamental ultraviolet regularization of momentum states at finite temperatures.

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Cite This Study

Y. Li (2026) studied this question.

synapsesocial.com/papers/69b64d5cb42794e3e660e425https://doi.org/10.5281/zenodo.18995492
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