Post-Markovian master equation à la microscopic collisional model

Fuente: arXiv
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Autori principali: Saha, Tanmay, Sahil, Athulya, K. P., Ghosh, Sibasish
Natura: Preprint
Pubblicazione: 2024
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author Saha, Tanmay
Sahil
Athulya, K. P.
Ghosh, Sibasish
author_facet Saha, Tanmay
Sahil
Athulya, K. P.
Ghosh, Sibasish
contents We derive a completely positive post-Markovian master equation (PMME) from a microscopic Markovian collisional model framework, incorporating bath memory effects via a probabilistic single-shot measurement approach. This phenomenological master equation is both analytically solvable and numerically tractable. Depending on the choice of the memory kernel function, the PMME can be reduced to the exact Nakajima-Zwanzig equation or the Markovian master equation, enabling a broad spectrum of dynamical behaviors. We also investigate thermalization using the derived equation, revealing that the post-Markovian dynamics accelerates the thermalization process, exceeding rates observed within the Markovian framework. Our approach solidifies the assertion that "collisional models can simulate any open quantum dynamics", underscoring the versatility of the models in realizing open quantum systems.
format Preprint
id arxiv_https___arxiv_org_abs_2411_16878
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Post-Markovian master equation à la microscopic collisional model
Saha, Tanmay
Sahil
Athulya, K. P.
Ghosh, Sibasish
Quantum Physics
We derive a completely positive post-Markovian master equation (PMME) from a microscopic Markovian collisional model framework, incorporating bath memory effects via a probabilistic single-shot measurement approach. This phenomenological master equation is both analytically solvable and numerically tractable. Depending on the choice of the memory kernel function, the PMME can be reduced to the exact Nakajima-Zwanzig equation or the Markovian master equation, enabling a broad spectrum of dynamical behaviors. We also investigate thermalization using the derived equation, revealing that the post-Markovian dynamics accelerates the thermalization process, exceeding rates observed within the Markovian framework. Our approach solidifies the assertion that "collisional models can simulate any open quantum dynamics", underscoring the versatility of the models in realizing open quantum systems.
title Post-Markovian master equation à la microscopic collisional model
topic Quantum Physics
url https://arxiv.org/abs/2411.16878