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Quantum coherence sets the quantum speed limit for mixed states

机译:量子相干性设定混合态的量子速度极限

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摘要

We cast observable measure of quantum coherence as a resource to control the quantum speed limit (QSL) for unitary evolutions. For non-unitary evolutions, QSL depends on that of the state of the system and environment together. We show that the product of the time bound and the coherence (asymmetry) or the quantum part of the uncertainty behaves in a geometric way under partial elimination and classical mixing of states. These relations give a new insight into the quantum speed limit. We also show that our bound is experimentally measurable and is tighter than various existing bounds in the literature. (c) 2015 Elsevier B.V. All rights reserved.
机译:我们将可观察到的量子相干性度量作为控制单一演化的量子速度限制(QSL)的资源。对于非单一的演化,QSL取决于系统和环境的状态。我们表明,在部分消除和经典混合状态下,时间界限与相干性(不对称性)或不确定性的量子部分的乘积以几何方式表现。这些关系为量子速度极限提供了新的见解。我们还表明,我们的界限在实验上可以测量,并且比文献中现有的各种界限都更严格。 (c)2015 Elsevier B.V.保留所有权利。

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