拓扑绝缘体
表面状态
光子
圆极化
线极化
光子能量
极化(电化学)
物理
光子偏振
人口
自旋极化
凝聚态物理
自旋(空气动力学)
光学
曲面(拓扑)
化学
量子力学
激光器
电子
几何学
数学
人口学
物理化学
社会学
热力学
微带线
作者
Dmitry Panna,Raja Marjieh,Evyatar Sabag,Leonid Rybak,Amit Ribak,Amit Kanigel,Alex Hayat
摘要
We demonstrate efficient linear-optical access to surface-state spin dynamics in Bi2Se3 by probing transitions between two surface-state Dirac cones, providing a practical technique for spin-current dynamics studies in topological-insulator devices. Using broadband transient-reflectivity pump-probe measurements, we distinguish bulk and surface state-responses, by controlling photon energy and circular polarization at oblique incidence. For pump-photon energies corresponding to bulk-state transitions, the probe polarized co-circularly with the pump shows stronger reflectivity change, compared to the anti-circularly polarized probe. However, pump photon energies corresponding to surface-state transitions result in an opposite effect, with the anti-circularly polarized probe exhibiting stronger reflectivity change. This surprising behavior stems from the surface-state in-plane spin orientation near the Dirac point, and the surface-state spin population remains at the injected energy for several ps. These results enable an efficient approach for studying spin current dynamics in topological-insulator based technologies.
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