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Plasma-Wave Terahertz Detection Mediated by Topological Insulators Surface States

机译:拓扑绝缘子表面状态介导的等离子波太赫兹检测

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摘要

Topological insulators (TIs) represent a novel quantum state of matter, characterized by edge or surface-states, showing up on the topological character of the bulk wave functions. Allowing electrons to move along their surface, but not through their inside, they emerged as an intriguing material platform for the exploration of exotic physical phenomena, somehow resembling the graphene Dirac-cone physics, as well as for exciting applications in optoelectronics, spintronics, nanoscience, low-power electronics, and quantum computing. Investigation of topological surface states (TSS) is conventionally hindered by the fact that in most of experimental conditions the TSS properties are mixed up with those of bulk-states. Here, we activate, probe, and exploit the collective electronic excitation of TSS in the Dirac cone. By engineering Bi2Te(3-x)Sex stoichiometry, and by gating the surface of nanoscale field-effect-transistors, exploiting thin flakes of Bi2Te2.2Se0.8 or Bi2Se3, we provide the first demonstration of room-temperature terahertz (THz) detection mediated by overdamped plasma-wave oscillations on the "activated" TSS of a Bi2Te2.2Se0.8 flake. The reported detection performances allow a realistic exploitation of TSS for large-area, fast imaging, promising superb impacts on THz photonics.
机译:拓扑绝缘体(TIs)代表一种新颖的物质量子态,其特征是边缘态或表面态,表现出体波函数的拓扑特征。它们允许电子沿其表面而不是其内部移动,从而成为探索奇特的物理现象的有趣材料平台,在某种程度上类似于石墨烯狄拉克锥锥体物理,以及在光电子学,自旋电子学,纳米科学中的激动人心的应用,低功耗电子产品和量子计算。通常在大多数实验条件下,TSS特性与本体状态混合在一起,这阻碍了拓扑表面状态(TSS)的研究。在这里,我们激活,探测和利用狄拉克锥中TSS的集体电子激发。通过对Bi2Te(3-x)Sex化学计量进行工程处理,并对纳米级场效应晶体管的表面进行选通,利用Bi2Te2.2Se0.8或Bi2Se3的薄片,我们提供了室温太赫兹(THz)检测的首个演示Bi2Te2.2Se0.8薄片的“活化” TSS上的过阻尼等离子体波振荡介导了这种介导。报告的检测性能允许TSS在大面积,快速成像中得到实际利用,有望对THz光子产生极好的影响。

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