Environment engineering to protect quantum coherence in tripartite systems under dephasing noise

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Main Authors: Roy, Sovik, Kalaiselvan, Aahaman, Radhakrishnan, Chandrashekar, Ali, Md Manirul
Format: Preprint
Published: 2024
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author Roy, Sovik
Kalaiselvan, Aahaman
Radhakrishnan, Chandrashekar
Ali, Md Manirul
author_facet Roy, Sovik
Kalaiselvan, Aahaman
Radhakrishnan, Chandrashekar
Ali, Md Manirul
contents The practical success of quantum technology hinges on sustaining quantum coherence, which is vulnerable to environmental interactions causing decoherence. We investigate coherence in tripartite quantum systems under the influence of noisy environment. In this study, we explore the dynamics of the relative entropy of coherence for tripartite pure and mixed states in the presence of structured dephasing environments at finite temperatures. Our findings demonstrate that the system's resilience to decoherence is strongly influenced by the bath type and configuration. Specifically, when each qubit interacts with an independent environment, the coherence dynamics differ from those observed in a shared bath setting. In a Markov, memoryless environment, coherence in both pure and mixed states decay faster, whereas coherence is preserved for longer time in the presence of environment memory. This highlights the crucial role of environment memory in enhancing the robustness of tripartite coherence.
format Preprint
id arxiv_https___arxiv_org_abs_2412_15082
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Environment engineering to protect quantum coherence in tripartite systems under dephasing noise
Roy, Sovik
Kalaiselvan, Aahaman
Radhakrishnan, Chandrashekar
Ali, Md Manirul
Quantum Physics
The practical success of quantum technology hinges on sustaining quantum coherence, which is vulnerable to environmental interactions causing decoherence. We investigate coherence in tripartite quantum systems under the influence of noisy environment. In this study, we explore the dynamics of the relative entropy of coherence for tripartite pure and mixed states in the presence of structured dephasing environments at finite temperatures. Our findings demonstrate that the system's resilience to decoherence is strongly influenced by the bath type and configuration. Specifically, when each qubit interacts with an independent environment, the coherence dynamics differ from those observed in a shared bath setting. In a Markov, memoryless environment, coherence in both pure and mixed states decay faster, whereas coherence is preserved for longer time in the presence of environment memory. This highlights the crucial role of environment memory in enhancing the robustness of tripartite coherence.
title Environment engineering to protect quantum coherence in tripartite systems under dephasing noise
topic Quantum Physics
url https://arxiv.org/abs/2412.15082