论文标题

浆果相的概括和混合状态的纯化状态和热真空的分化

Generalizations of Berry phase and differentiation of purified state and thermal vacuum of mixed states

论文作者

Hou, Xu-Yang, Huang, Zi-Wen, Zhou, Zheng, Wang, Xin, Guo, Hao, Chien, Chih-Chun

论文摘要

在量子计算机上已实现了由状态向量对混合状态的两种表示,称为纯化状态和热真空。尽管两种表示看起来相似,但它们因Ancilla空间中的部分换位而有所不同。虽然普通可观察的物品无法辨别这两种表示,但我们将纯量子状态的浆果相推广到混合状态,并构建两个可以反映部分换位的几何阶段。通过概括绝热条件,我们构建了热浆果相,其两个表示的值可能不同,但是,热浆果相可能包含非晶格贡献。另外,我们将并行通道条件概括为包括系统和Ancilla,并显示在平行传输下排除了动态阶段。平行运输中积累的几何相是广义的浆果相,它可能会或可能不会将纯化的状态与热真空区分开,具体取决于协议。可以通过两种表示在量子计算机上实现浆果相位的混合状态,以揭示有限温度量子系统的丰富物理学。

Two representations of mixed states by state-vectors, known as purified state and thermal vacuum, have been realized on quantum computers. While the two representations look similar, they differ by a partial transposition in the ancilla space. While ordinary observables cannot discern the two representations, we generalize the Berry phase of pure quantum states to mixed states and construct two geometric phases that can reflect the partial transposition. By generalizing the adiabatic condition, we construct the thermal Berry phase, whose values from the two representations can be different, However, the thermal Berry phase may contain non-geometrical contributions. Alternatively, we generalize the parallel-transport condition to include the system and ancilla and show the dynamical phase is excluded under parallel transport. The geometrical phase accumulated in parallel transport is the generalized Berry phase, which may or may not differentiate a purified state from a thermal vacuum depending on the protocol. The generalizations of the Berry phase to mixed states may be realized and measured on quantum computers via the two representations to reveal the rich physics of finite-temperature quantum systems.

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