量子退相干
去相
物理
量子位元
耗散系统
拓扑(电路)
量子相变
拓扑序
量子力学
拓扑简并
相变
量子
联轴节(管道)
相(物质)
统计物理学
对称保护拓扑序
数学
组合数学
机械工程
工程类
作者
Gian Luca Giorgi,Stefano Longhi,Albert Cabot,Roberta Zambrini
标识
DOI:10.1002/andp.201900307
摘要
Abstract Understanding the physical significance and probing the global invariants characterizing quantum topological phases in extended systems is a main challenge in modern physics with major impact in different areas of science. Here, a quantum‐information‐inspired probing method is proposed where topological phase transitions are revealed by a non‐Markovianity quantifier. The idea is illustrated by considering the decoherence dynamics of an external read‐out qubit that probes a Su–Schrieffer–Heeger (SSH) chain with either pure dephasing or dissipative coupling. Qubit decoherence features and non‐Markovianity measure clearly signal the topological phase transition of the SSH chain.
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