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Quantum majorization and a complete set of entropic conditions for quantum thermodynamics

机译:量子主化和量子热力学的完整熵条件

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摘要

What does it mean for one quantum process to be more disordered than another? Interestingly, this apparently abstract question arises naturally in a wide range of areas such as information theory, thermodynamics, quantum reference frames, and the resource theory of asymmetry. Here we use a quantum-mechanical generalization of majorization to develop a framework for answering this question, in terms of single-shot entropies, or equivalently, in terms of semi-definite programs. We also investigate some of the applications of this framework, and remarkably find that, in the context of quantum thermodynamics it provides the first complete set of necessary and sufficient conditions for arbitrary quantum state transformations under thermodynamic processes, which rigorously accounts for quantum-mechanical properties, such as coherence. Our framework of generalized thermal processes extends thermal operations, and is based on natural physical principles, namely, energy conservation, the existence of equilibrium states, and the requirement that quantum coherence be accounted for thermodynamically.
机译:一个量子过程比另一个量子过程更无序是什么意思?有趣的是,这个显然抽象的问题自然而然地出现在广泛的领域中,例如信息论,热力学,量子参考框架和非对称性资源理论。在这里,我们使用量子力学的广义化泛化来开发一个框架,以单发熵或等效的半确定程序来回答这个问题。我们还研究了该框架的某些应用,并发现,在量子热力学的背景下,它为热力学过程中的任意量子态转换提供了第一套必要条件和充分条件,这些条件严格地解释了量子力学性质。 ,例如连贯性。我们的广义热过程框架扩展了热操作,并基于自然物理原理,即能量守恒,平衡态的存在以及量子相干性必须以热力学方式解决。

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