Strong coupling non-Markovian quantum thermodynamics of a finite-bath system

D Devvrat Tiwari (Indian Institute of Technology , Jodhpur 342030,) B Baibhab Bose (Indian Institute of Technology , Jodhpur 342030,) S Subhashish Banerjee (Indian Institute of Technology , Jodhpur 342030,)

Abstract

The focus is on understanding the quantum thermodynamics of strongly coupled non-Markovian quantum systems. To this end, a non-trivial, non-Markovian model of a central spin surrounded by a spin bath is taken up, and its exact evolution is derived for arbitrary system-bath couplings. The fundamental quantum thermodynamic quantities, such as system and bath internal energies, work, heat, entropy production, and ergotropy, are calculated using the dynamics and the original system (bath) Hamiltonian. An explicit expression for the work, a mismatch between the system and bath internal energies, is derived. The thermodynamic entropy of the system at thermal equilibrium is studied using the Hamiltonian of mean force in the strong coupling regime. The role of a canonical Hamiltonian in calculating the above thermodynamic quantities, a recently developed technique, is also investigated. Furthermore, an interesting observation relevant to the spin bath acting as a charger is made in a scenario where the central spin is envisaged as a quantum battery.

Article Details

Volume / Issue Vol. 162, Issue 11
Published March 21, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (3)

D

Devvrat Tiwari

Indian Institute of Technology , Jodhpur 342030,

B

Baibhab Bose

Indian Institute of Technology , Jodhpur 342030,

S

Subhashish Banerjee

Indian Institute of Technology , Jodhpur 342030,