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首页> 外文期刊>Physical Review X >Light-Driven Raman Coherence as a Nonthermal Route to Ultrafast Topology Switching in a Dirac Semimetal
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Light-Driven Raman Coherence as a Nonthermal Route to Ultrafast Topology Switching in a Dirac Semimetal

机译:光驱动的拉曼连贯性作为狄拉克半岩石中超快拓扑切换的非热路线

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A grand challenge underlies the entire field of topology-enabled quantum logic and information science: how to establish topological control principles driven by quantum coherence and understand the time dependence of such periodic driving. Here we demonstrate a few-cycle THz-pulse-induced phase transition in a Dirac semimetal ZrTe5 that is periodically driven by vibrational coherence due to excitation of the lowest Raman active mode. Above a critical THz-pump field threshold, there emerges a long-lived metastable phase, approximately 100 ps, with unique Raman phonon-assisted topological switching dynamics absent for optical pumping. The switching also manifests itself by distinct features: nonthermal spectral shape, relaxation slowing near the Lifshitz transition where the critical Dirac point occurs, and diminishing signals at the same temperature that the Berry-curvature-induced anomalous Hall effect magnetoresistance vanishes. These results, together with first-principles modeling, identify a modeselective Raman coupling that drives the system from strong to weak topological insulators with a Dirac semimetal phase established at a critical atomic displacement controlled by the phonon coherent pumping. Harnessing of vibrational coherence can be extended to steer symmetry-breaking transitions, i.e., Dirac to Weyl ones, with implications for THz topological quantum gate and error correction applications.
机译:一个大挑战是支持拓扑的量子逻辑和信息科学领域的基础:如何建立量子一致性驱动的拓扑控制原则,了解这种定期驾驶的时间依赖性。这里,我们展示了在DIRAC半型Zrte5中的几个周期Thz脉冲引起的相变,这是由于最低拉曼有源模式的激励而通过振动连贯的振动连贯驱动。在临界THz-泵场阈值之上,出现了长寿的亚稳态相,大约100 ps,具有独特的拉曼声子辅助拓扑开关动力学,不适用于光学泵送。切换也通过不同的特点表现出来:非热光谱形状,Lifshitz转换附近的松弛放缓,其中临界DIRAC点发生,并且在浆果曲率诱导的异常霍姆效应磁阻消失的相同温度下的信号递减。这些结果与第一原理建模相同,识别了一种多种模切拉曼耦合,其驱动系统从强度到弱拓扑绝缘体,该绝缘体具有在由声子相干泵浦控制的临界原子位移处建立的DIRAC半阶段。可以扩展振动相干性的利用以引导对称性的转换,即DIRAC到Weyl Oner,具有对THz拓扑量子栅极和纠错应用的影响。

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