纠缠和其他量子资源的催化作用。

Chandan Datta, Tulja Varun Kondra, Marek Miller, Alexander Streltsov
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引用次数: 11

摘要

在化学中,催化剂是一种能够进行化学反应或提高反应速率,同时在反应过程中保持不变的物质。量子催化增强了我们在物理约束下将量子态相互转化的能力,而不是化学反应。约束的性质取决于所研究的问题,例如,可能由能源保护引起。本文综述了量子催化的最新进展,并对这一研究方向进行了历史综述。我们重点讨论了量子纠缠和相干的催化作用,并在量子热力学和一般量子资源理论中讨论了这一现象。我们回顾了量子催化的应用,并讨论了最近在通用催化方面的努力,其中催化剂的量子态不取决于要转化的状态。催化挪用也被考虑在内,如果催化剂的状态在过渡过程中发生变化,就会出现这种现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Catalysis of entanglement and other quantum resources.

In chemistry, a catalyst is a substance which enables a chemical reaction or increases its rate, while remaining unchanged in the process. Instead of chemical reactions,quantum catalysisenhances our ability to convert quantum states into each other under physical constraints. The nature of the constraints depends on the problem under study and can arise, e.g. from energy preservation. This article reviews the most recent developments in quantum catalysis and gives a historical overview of this research direction. We focus on the catalysis of quantum entanglement and coherence, and also discuss this phenomenon in quantum thermodynamics and general quantum resource theories. We review applications of quantum catalysis and also discuss the recent efforts on universal catalysis, where the quantum state of the catalyst does not depend on the states to be transformed. Catalytic embezzling is also considered, a phenomenon that occurs if the catalyst's state can change in the transition.

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