A geometrical framework for quantum incompatibility resources

Xiaolin Zhang, Rui Qu, Zehong Chang, Quan Quan, Hong Gao, Fuli Li, Pei Zhang
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Abstract

Quantum incompatibility is a fundamental property in quantum physics and is considered as a resource in quantum information processing tasks. Here, we construct a framework based on the incompatibility witness originated from quantum state discrimination. In this framework, we discuss the geometrical properties of the witnesses with noisy mutually unbiased bases and construct a quantifier of quantum incompatibility associated with geometrical information. Furthermore, we explore the incompatibility of a pair of positive operator valued measurements, which only depends on the information of measurements, and discuss the incompatibility of measurements which can be discriminated by mutually unbiased bases. Finally, if we take a resource-theory perspective, the new-defined quantifier can characterize the resource of incompatibility. This geometrical framework gives the evidence that vectors can be utilized to describe resourceful incompatibility and make a step to explore geometrical features of quantum resources.

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量子不相容资源的几何框架
量子不相容是量子物理学中的一个基本特性,在量子信息处理任务中被视为一种资源。在此,我们构建了一个基于量子态判别不相容见证的框架。在这个框架中,我们讨论了具有噪声互不偏倚基的见证的几何特性,并构建了一个与几何信息相关的量子不相容量子化器。此外,我们还探讨了一对正算子值测量的不兼容性,它只取决于测量的信息,并讨论了可通过互不偏倚基判别的测量的不兼容性。最后,如果我们从资源理论的角度出发,新定义的量词可以表征不相容资源。这一几何框架证明了向量可以用来描述资源的不兼容性,为探索量子资源的几何特征迈出了一步。
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8.20
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