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非零温度下量子伊辛链中的量子相变

Quantum Phase Transition in a Quantum Ising Chain at Nonzero Temperatures.

作者信息

Zhang K L, Song Z

机构信息

School of Physics, Nankai University, Tianjin 300071, China.

出版信息

Phys Rev Lett. 2021 Mar 19;126(11):116401. doi: 10.1103/PhysRevLett.126.116401.

Abstract

We study the response of a thermal state of an Ising chain to a nonlocal non-Hermitian perturbation, which coalesces the topological Kramer-like degeneracy in the ferromagnetic phase. The dynamic responses for initial thermal states in different quantum phases are distinct. The final state always approaches its half component with a fixed parity in the ferromagnetic phase but remains almost unchanged in the paramagnetic phase. This indicates that the phase diagram at zero temperature is completely preserved at finite temperatures. Numerical simulations for Loschmidt echoes demonstrate such dynamical behaviors in finite-size systems. In addition, it provides a clear manifestation of the bulk-boundary correspondence at nonzero temperatures. This work presents an alternative approach to understanding the quantum phase transitions of quantum spin systems at nonzero temperatures.

摘要

我们研究了伊辛链热态对非局域非厄米微扰的响应,该微扰在铁磁相中合并了类似拓扑克莱默简并。不同量子相中的初始热态的动态响应是不同的。在铁磁相中,最终状态总是以固定的宇称趋近其半分量,但在顺磁相中几乎保持不变。这表明零温度下的相图在有限温度下完全保留。对洛施密特回波的数值模拟证明了有限尺寸系统中的这种动力学行为。此外,它在非零温度下清晰地体现了体-边界对应。这项工作提出了一种理解非零温度下量子自旋系统量子相变的替代方法。

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