Quantum Speed Limit in Terms of Coherence Variations

Fuente: arXiv
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Main Authors: Mai, Zi-yi, Yu, CHang-shui
Format: Preprint
Published: 2024
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author Mai, Zi-yi
Yu, CHang-shui
author_facet Mai, Zi-yi
Yu, CHang-shui
contents Coherence is the most fundamental quantum resource in quantum information processing. How fast a physical system gets coherence or decoherence is a critical ingredient. We present an attainable quantum speed limit based on the variation of quantum coherence subject to a dynamical process. It indicates that for a 2-dimensional quantum state, one can always find corresponding dynamics driving it to evolve along the geodesic to another state with certain coherence variation. As applications, we study the coherence quantum speed limits of the dephasing and dissipative dynamics. It is shown that the dephasing dynamics can saturate our coherence quantum speed limit, and the decoherence of the state with identical populations will be faster than others. However, the dissipative dynamics have the opposite behavior. In addition, we illustrate a stronger tightness of our bound for the mentioned dynamics by comparison.
format Preprint
id arxiv_https___arxiv_org_abs_2410_08514
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum Speed Limit in Terms of Coherence Variations
Mai, Zi-yi
Yu, CHang-shui
Quantum Physics
Coherence is the most fundamental quantum resource in quantum information processing. How fast a physical system gets coherence or decoherence is a critical ingredient. We present an attainable quantum speed limit based on the variation of quantum coherence subject to a dynamical process. It indicates that for a 2-dimensional quantum state, one can always find corresponding dynamics driving it to evolve along the geodesic to another state with certain coherence variation. As applications, we study the coherence quantum speed limits of the dephasing and dissipative dynamics. It is shown that the dephasing dynamics can saturate our coherence quantum speed limit, and the decoherence of the state with identical populations will be faster than others. However, the dissipative dynamics have the opposite behavior. In addition, we illustrate a stronger tightness of our bound for the mentioned dynamics by comparison.
title Quantum Speed Limit in Terms of Coherence Variations
topic Quantum Physics
url https://arxiv.org/abs/2410.08514