Quantum homogenization in non-Markovian collisional model

Fuente: arXiv
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Hauptverfasser: Saha, Tanmay, Das, Arpan, Ghosh, Sibasish
Format: Preprint
Veröffentlicht: 2022
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author Saha, Tanmay
Das, Arpan
Ghosh, Sibasish
author_facet Saha, Tanmay
Das, Arpan
Ghosh, Sibasish
contents Collisional models are a category of microscopic framework designed to study open quantum systems. The framework involves a system sequentially interacting with a bath comprised of identically prepared units. In this regard, quantum homogenization is a process where the system state approaches the identically prepared state of bath unit in the asymptotic limit. Here, we study the homogenization process for a single qubit in the non-Markovian collisional model framework generated via additional bath-bath interaction. With partial swap operation as both system-bath and bath-bath unitary, we numerically demonstrate that homogenization is achieved irrespective of the initial states of the system or bath units. This is reminiscent of the Markovian scenario, where partial swap is the unique operation for a universal quantum homogenizer. On the other hand, we observe that the rate of homogenization is slower than its Markovian counter part. Interestingly, a different choice of bath-bath unitary speeds up the homogenization process but loses the universality, being dependent on the initial states of the bath units.
format Preprint
id arxiv_https___arxiv_org_abs_2201_08412
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Quantum homogenization in non-Markovian collisional model
Saha, Tanmay
Das, Arpan
Ghosh, Sibasish
Quantum Physics
Collisional models are a category of microscopic framework designed to study open quantum systems. The framework involves a system sequentially interacting with a bath comprised of identically prepared units. In this regard, quantum homogenization is a process where the system state approaches the identically prepared state of bath unit in the asymptotic limit. Here, we study the homogenization process for a single qubit in the non-Markovian collisional model framework generated via additional bath-bath interaction. With partial swap operation as both system-bath and bath-bath unitary, we numerically demonstrate that homogenization is achieved irrespective of the initial states of the system or bath units. This is reminiscent of the Markovian scenario, where partial swap is the unique operation for a universal quantum homogenizer. On the other hand, we observe that the rate of homogenization is slower than its Markovian counter part. Interestingly, a different choice of bath-bath unitary speeds up the homogenization process but loses the universality, being dependent on the initial states of the bath units.
title Quantum homogenization in non-Markovian collisional model
topic Quantum Physics
url https://arxiv.org/abs/2201.08412