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Quantum simulation of Abelian Wu-Yang monopoles in spin-1/2 systems

机译:旋转-1 / 2系统中阿比越武阳垄断量子仿真

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摘要

With the help of the Berry curvature and the first Chern number (C-1), we both analytically and numerically investigate and thus simulate artificial magnetic monopoles formed in parameter space of the Hamiltonian of a driven superconducting qubit. The topological structure of a spin-1/2 system (qubit) can be captured by the distribution of Berry curvature, which describes the geometry of eigenstates of the Hamiltonian. Degenerate points in parameter space act as sources (C-1 = 1, represented by quantum ground state manifold) or sinks (C-1 = -1, represented by quantum excited state manifold) of the magnetic field. We note that the strength of the magnetic field (described by Berry curvature) has an apparent impact on the quantum states during the process of topological transition. It exhibits an unusual property that the transition of the quantum states is asymmetric when the degenerate point passes from outside to inside and again outside the manifold spanned by system parameters. Our results also pave the way to explore intriguing properties of Abelian Wu-Yang monopoles in other spin-1/2 systems.
机译:借助于浆果曲率和第一挖掘号码(C-1),我们在分析上和数值上进行调查,从而模拟在驱动超导量子比特的汉密尔顿人的参数空间中形成的人工磁垄断。通过浆果曲率的分布,可以捕获自旋-1 / 2系统(QUBit)的拓扑结构,该浆果曲率分布描述了汉密尔顿人的特征的几何形状。参数空间中的退化点充当磁场的磁场(由量子接地状态歧管表示的C-1 = 1,由磁场的量子激发状态歧管表示的C-1 = -1表示)。我们注意到,在拓扑过渡过程中,磁场的强度(由浆果曲率描述)对量子状态具有明显的影响。它表现出一种不符的不对称的不对称,当退化点从外部进入内部,再过在系统参数跨越的歧管外部。我们的业绩还铺平了探讨阿比越武洋垄断在其他Spin-1/2系统中的有趣性质的方法。

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