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The Phase-Coupled Caldeira-Leggett Model: Non-Markovian Open Quantum Dynamics beyond Linear Dissipation

Quantum Physics 2025-10-30 v1 Chemical Physics

Abstract

We introduce the \textit{Phase-Coupled Caldeira-Leggett} (PCL) model of quantum dissipation and develop an exact framework for its dynamics. Unlike the conventional Caldeira-Leggett model with linear system-bath coupling HSBF^H_{\mathrm{SB}}\propto\hat F, the PCL model features an exponential interaction HSBeiλF^H_{\mathrm{SB}}\propto e^{i\lambda \hat F}, where F^\hat F denotes the collective bath coordinate. This model unifies concepts from quantum Brownian motion and polaron physics, providing a general platform to study phase-mediated dissipation and decoherence beyond the linear-response regime. Despite its nonlinear system-bath coupling, the Gaussian nature of the environment allows a nonperturbative and non-Markovian treatment of PCL model within the algebra of dissipative quasiparticles. We obtain an exact closed-form equation of motion for the reduced density operator, and numerical simulations reveal distinctive dynamical behaviors that deviate markedly from those predicted by the conventional Caldeira-Leggett model.

Keywords

Cite

@article{arxiv.2510.25133,
  title  = {The Phase-Coupled Caldeira-Leggett Model: Non-Markovian Open Quantum Dynamics beyond Linear Dissipation},
  author = {Ao-Xiang Chang and Yu Su and Zi-Fan Zhu and Yao Wang and Rui-Xue Xu and YiJing Yan},
  journal= {arXiv preprint arXiv:2510.25133},
  year   = {2025}
}

Comments

3 pages, 4 figures