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Measurement of Intrinsic Dirac Fermion Cooling on the Surface of the Topological Insulator Bi_2Se_3 Using Time-Resolved and Angle-Resolved Photoemission Spectroscopy

机译:时间分辨和角度分辨光发射光谱法测量拓扑绝缘子Bi_2Se_3表面的固有狄拉克费米子冷却

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摘要

We perform time- and angle-resolved photoemission spectroscopy of a prototypical topological insulator (TI) Bi_2Se_3 to study the ultrafast dynamics of surface and bulk electrons after photoexcitation. By analyzing the evolution of surface states and bulk band spectra, we obtain their electronic temperature and chemical potential relaxation dynamics separately. These dynamics reveal strong phonon-assisted surface-bulk coupling at high lattice temperature and total suppression of inelastic scattering between the surface and the bulk at low lattice temperature. In this low temperature regime, the unique cooling of Dirac fermions in TI by acoustic phonons is manifested through a power law dependence of the surface temperature decay rate on carrier density.
机译:我们执行原型拓扑绝缘体(TI)Bi_2Se_3的时间分辨和角度分辨光发射光谱,以研究光激发后表面和体电子的超快动力学。通过分析表面态和体能谱的演变,我们分别获得了它们的电子温度和化学势弛豫动力学。这些动力学揭示了在高晶格温度下强大的声子辅助表面-体相耦合,并在低晶格温度下完全抑制了表面与主体之间的非弹性散射。在这种低温条件下,通过表面声波衰减率与载流子密度的幂律关系,可以看出声子在TI中狄拉克费米子的独特冷却。

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