论文标题

拓扑绝缘体BI2SE3中的狄拉克带,由时间分辨动量显微镜映射

Dirac bands in the topological insulator Bi2Se3 mapped by time-resolved momentum microscopy

论文作者

Ponzoni, Stefano, Paßlack, Felix, Stupar, Matija, Janas, David Maximilian, Zamborlini, Giovanni, Cinchetti, Mirko

论文摘要

我们已经使用基于激光的时间分辨动量显微镜使用6 eV探针 - 探针 - 探针 - 探针 - 探针 - 探针 - 探针 - 探测器研究了拓扑绝缘体BI2SE3在大型平行动量上的狄拉克带的能量分散。使用此设置,我们可以在宽动量窗口中探测无占用状态的歧管,直至较高的中间状态能量。我们观察到拓扑保护的迪拉克状态非常依赖动量依赖性演化,使得表面对称性所决定的各向异性。我们的结果与从GW校正的紧密结合模型获得的理论表面光谱非常吻合,这表明该方法在预测具有非平常拓扑的大型系统的准粒子激发谱时的有效性。用0.97 eV光子的光激发后,分配给了散装价带反传导带转变后,地表状态的超平衡种群以多皮秒时间尺度的形式演变,与简单的热力学模型一致,具有固定的颗粒,表明体积和表面状态之间存在显着脱离。

We have studied the energy dispersion of the Dirac bands of the topological insulator Bi2Se3 at large parallel momenta using a setup for laser-based time-resolved momentum microscopy with 6 eV probe-photons. Using this setup, we can probe the manifold of unoccupied states up to higher intermediate-state energies in a wide momentum window. We observe a strongly momentum-dependent evolution of the topologically protected Dirac states into a conduction band resonance, highlighting the anisotropy dictated by the surface symmetry. Our results are in remarkable agreement with the theoretical surface spectrum obtained from a GW-corrected tight-binding model, suggesting the validity of the approach in the prediction of the quasiparticle excitation spectrum of large systems with non-trivial topology. After photoexcitation with 0.97 eV photons, assigned to a bulk valence band-conduction band transition, the out-of-equilibrium population of the surface state evolves on a multi-picosecond time scale, in agreement with a simple thermodynamical model with a fixed number of particles, suggesting a significant decoupling between bulk and surface states.

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