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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Ubiquity of zeros of the Loschmidt amplitude for mixed states in different physical processes and its implication
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Ubiquity of zeros of the Loschmidt amplitude for mixed states in different physical processes and its implication

机译:在不同物理过程中混合状态的洛克米特幅度的零升零及其含义

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The Loschmidt amplitude of the purified states of mixed-state density matrices is shown to have zeros when the system undergoes a quasistatic, quench, or Uhlmann process. While the Loschmidt-amplitude zero of a quench process corresponds to a dynamical quantum phase transition (DQPT) accompanied by the diverging dynamical free energy, the Loschmidt-amplitude zero of the Uhlmann process corresponds to a topological phase transition (TQPT) accompanied by a jump of the Uhlmann phase. Although the density matrix remains intact in a quasistatic process, the Loschmidt amplitude can have zeros not associated with a phase transition. We present examples of two-level and three-level systems exhibiting finite- or infinite-temperature DQPTs and finite-temperature TQPTs associated with the Loschmidt-amplitude zeros. Moreover, the dynamical phase or geometrical phase of mixed states can be extracted from the Loschmidt amplitude. Those phases may become quantized or exhibit discontinuity at the Loschmidt-amplitude zeros. A spinor representation of the purified states of a general two-level system is presented to offer more insights into the change of purification in different processes. The quasistatic process, for example, is shown to cause a rotation of the spinor.
机译:当系统经历Quasistatic,淬火或Uhlmann工艺时,示出了混合状态密度矩阵的纯化状态的Loschmidt幅度具有零。虽然骤冷过程的Loschmidt幅度零对应于由发散动态自由能量的动态量子相变(DQPT),但是Uhlmann工艺的Loschmidt幅度零对应于伴随跳转的拓扑阶段转换(TQPT) Uhlmann阶段。尽管密度矩阵在Quasistatic过程中保持完整,但是洛氏振幅可以具有与相转变相关的零。我们提出了两级和三级系统的示例,其表现出有限或无限温度DQPTS和与洛西级振零相关的有限温度TQPT。此外,可以从Loschmidt幅度中提取混合状态的动态相或几何相。这些阶段可以在Loschmidt-Smplitibe Zeros上量化或表现出不连续性。提出了一般两级系统的纯化状态的纯化状态,以提供更多的见解在不同过程中净化的变化。例如,示出了Quasistatic工艺来导致旋转旋转器的旋转。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第10期|104305.1-104305.13|共13页
  • 作者单位

    Department of Physics Southeast University Jiulonghu Campus Nanjing 211189 China;

    Department of Physics Southeast University Jiulonghu Campus Nanjing 211189 China;

    Department of Physics Southeast University Jiulonghu Campus Nanjing 211189 China;

    College of physics Sichuan University Chengdu Sichuan 610064 China;

    Department of Applied Physics Nanjing University of Posts and Telecommunications Nanjing 210003 China;

    Department of physics University of California Merced California 95343 USA;

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