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Two-dimensional universal conductance fluctuations and the electron-phonon interaction of surface states in Bi2Te2Se microflakes

机译:Bi2Te2Se薄片中的二维通用电导涨落和表面态的电子-声子相互作用

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摘要

The universal conductance fluctuations (UCFs), one of the most important manifestations of mesoscopic electronic interference, have not yet been demonstrated for the two-dimensional surface state of topological insulators (TIs). Even if one delicately suppresses the bulk conductance by improving the quality of TI crystals, the fluctuation of the bulk conductance still keeps competitive and difficult to be separated from the desired UCFs of surface carriers. Here we report on the experimental evidence of the UCFs of the two-dimensional surface state in the bulk insulating Bi2Te2Se microflakes. The solely-B⊥-dependent UCF is achieved and its temperature dependence is investigated. The surface transport is further revealed by weak antilocalizations. Such survived UCFs of the surface states result from the limited dephasing length of the bulk carriers in ternary crystals. The electron-phonon interaction is addressed as a secondary source of the surface state dephasing based on the temperature-dependent scaling behavior.
机译:介电电子干扰的最重要表现之一,普遍电导率涨落(UCFs),尚未针对拓扑绝缘体(TIs)的二维表面状态进行证明。即使通过改善TI晶体的质量来精细地抑制体积电导,体积电导的波动仍保持竞争力,并且难以与所需的表面载体UCF分离。在这里,我们报告了块状绝缘Bi2Te2Se微薄片中二维表面状态的UCF的实验证据。获得了完全依赖于B U的UCF,并研究了其对温度的依赖性。通过弱的抗局部定位进一步揭示了表面运输。表面态的这种幸存的UCF是由于三元晶体中体载流子的有限相移长度而引起的。电子-声子相互作用被认为是基于与温度相关的缩放行为的表面态相移的第二来源。

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