Exponentially accelerated relaxation and quantum Mpemba effect in open quantum systems
arXiv:2512.07561 · doi:10.1103/7gsd-21tb
Abstract
We investigate the quantum Mpemba effect in the relaxation of open quantum systems whose effective dynamics is described by Davies maps. We introduce a class of unitary transformations constructed from permutation matrices that, when applied to an initial state, (i) suppress the slowest decaying modes of the nonunitary dynamics and (ii) maximize the state's distinguishability from the steady state. The first condition ensures exponentially faster convergence to equilibrium, while the second implies that a quantum system initially further from equilibrium can approach it more rapidly than one that starts closer. This protocol thus realizes a genuine Mpemba effect, and its simulation requires low computational effort. We prove that, for any initial state, there exists a permutation matrix that maximizes its distance from equilibrium with respect to a chosen information-theoretic distinguishability measure. We illustrate our findings for a two-level system, as well as for the nonunitary dynamics of the transverse-field Ising chain and the XXZ chain, each weakly coupled to a bosonic thermal bath. In these cases, the quantum Mpemba effect is demonstrated using the Hilbert-Schmidt distance, quantum relative entropy, and trace distance. Overall, our results provide a versatile framework for engineering a genuine quantum Mpemba effect in Markovian open quantum systems.
16 pages, 4 figures. Close to published version
References in corpus (39)
- Open Quantum Systems. An Introduction
- A short introduction to the Lindblad Master Equation
- Third quantization: a general method to solve master equations for quadratic open Fermi systems
- Anomalous cooling and heating - the Mpemba effect and its inverse
- Exponentially faster cooling in a colloidal system
- Entanglement asymmetry as a probe of symmetry breaking
- Exponentially accelerated approach to stationarity in Markovian open quantum systems through the Mpemba effect
- Quantum principal component analysis only achieves an exponential speedup because of its state preparation assumptions
- The Mpemba index and anomalous relaxation
- Microscopic origin of the quantum Mpemba effect in integrable systems
- Quantum Mpemba effect in a quantum dot with reservoirs
- Lindblad dissipative dynamics in presence of phase coexistence
- Symmetry restoration and quantum Mpemba effect in symmetric random circuits
- Accurate Lindblad-Form Master Equation for Weakly Damped Quantum Systems Across All Regimes
- Observation of quantum strong Mpemba effect
- Entanglement asymmetry and quantum Mpemba effect in two-dimensional free-fermion systems
- Thermodynamics of the quantum Mpemba effect
- On the uniqueness of the steady-state solution of the Lindblad-Gorini-Kossakowski-Sudarshan equation
- Quantum jumps and entropy production
- The quantum Mpemba effects
- Mpemba effects in open nonequilibrium quantum systems
- Quantum state discrimination: a geometric approach
- Violation of detailed balance accelerates relaxation
- Strong bound between trace distance and Hilbert-Schmidt distance for low-rank states
- Eigenvector Approximation Leading to Exponential Speedup of Quantum Eigenvalue Calculation
- The quantum Mpemba effect in free-fermionic mixed states
- Speedups in nonequilibrium thermal relaxation: Mpemba and related effects
- Quenching from superfluid to free bosons in two dimensions: entanglement, symmetries, and quantum Mpemba effect
- Quantum Mpemba Effects from Symmetry Perspectives
- Pontus-Mpemba effects
- Information geometry approach to quantum stochastic thermodynamics
- Mpemba meets Newton: Exploring the Mpemba and Kovacs effects in the time-delayed cooling law
- A simpler probe of the quantum Mpemba effect in closed systems
- Accelerating Quantum Relaxation via Temporary Reset: A Mpemba-Inspired Approach
- Violation of Detailed Balance in Quantum Open Systems
- Speeding up Pontus-Mpemba effects via dynamical phase transitions
- Symmetry breaking in chaotic many-body quantum systems at finite temperature
- Robustness of the quantum Mpemba effect against state-preparation errors
- Quantum speed limits based on Jensen-Shannon and Jeffreys divergences for general physical processes