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Frobenius-norm-based measures of quantum coherence and asymmetry

机译:基于Frobenius范数的量子相干和不对称性度量

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We formulate the Frobenius-norm-based measures for quantum coherence and asymmetry respectively. In contrast to the resource theory of coherence and asymmetry, we construct a natural measure of quantum coherence inspired from optical coherence theory while the group theoretical approach is employed to quantify the asymmetry of quantum states. Besides their simple structures and explicit physical meanings, we observe that these quantities are intimately related to the purity (or linear entropy) of the corresponding quantum states. Remarkably, we demonstrate that the proposed coherence quantifier is not only a measure of mixedness, but also an intrinsic (basis-independent) quantification of quantum coherence contained in quantum states, which can also be viewed as a normalized version of Brukner-Zeilinger invariant information. In our context, the asymmetry of N-qubit quantum systems is considered under local independent and collective transformations. In- triguingly, it is illustrated that the collective effect has a significant impact on the asymmetry measure, and quantum correlation between subsystems plays a non-negligible role in this circumstance.
机译:我们分别针对量子相干性和不对称性制定了基于Frobenius范数的度量。与相干和不对称的资源理论相反,我们从光学相干理论出发构造了一种自然的量子相干度量,而群理论方法则用于量化量子态的不对称性。除了它们的简单结构和明确的物理含义外,我们还观察到这些数量与相应量子态的纯度(或线性熵)密切相关。值得注意的是,我们证明了所提出的相干量不仅是混合性的量度,而且还是量子态中包含的量子相干的本征(与基量无关)量化,也可以看作是Brukner-Zeilinger不变信息的规范化版本。在我们的上下文中,在局部独立和集体变换下考虑了N量子位量子系统的不对称性。有趣的是,它说明了集体效应对不对称性度量有重大影响,并且子系统之间的量子相关性在这种情况下起着不可忽略的作用。

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