Chitambar Eric, Gour Gilad
Department of Physics and Astronomy, Southern Illinois University, Carbondale, Illinois 62901, USA.
Department of Mathematics and Statistics, University of Calgary, Alberta T2N 1N4, Canada.
Phys Rev Lett. 2016 Jul 15;117(3):030401. doi: 10.1103/PhysRevLett.117.030401. Epub 2016 Jul 12.
Considerable work has recently been directed toward developing resource theories of quantum coherence. In this Letter, we establish a criterion of physical consistency for any resource theory. This criterion requires that all free operations in a given resource theory be implementable by a unitary evolution and projective measurement that are both free operations in an extended resource theory. We show that all currently proposed basis-dependent theories of coherence fail to satisfy this criterion. We further characterize the physically consistent resource theory of coherence and find its operational power to be quite limited. After relaxing the condition of physical consistency, we introduce the class of dephasing-covariant incoherent operations as a natural generalization of the physically consistent operations. Necessary and sufficient conditions are derived for the convertibility of qubit states using dephasing-covariant operations, and we show that these conditions also hold for other well-known classes of incoherent operations.
最近,大量工作致力于发展量子相干的资源理论。在本信函中,我们为任何资源理论建立了一个物理一致性标准。该标准要求给定资源理论中的所有自由操作都可通过幺正演化和投影测量来实现,而这两者在扩展资源理论中都是自由操作。我们表明,目前所有提出的基于基的相干理论都不满足该标准。我们进一步刻画了物理一致的相干资源理论,并发现其操作能力相当有限。在放宽物理一致性条件后,我们引入了退相协变非相干操作类,作为物理一致操作的自然推广。推导了使用退相协变操作实现量子比特态可转换性的充要条件,并且我们表明这些条件对其他著名的非相干操作类也成立。