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Communication: Momentum-resolved quantum interference in optically excited surface states

机译:通信:在光学激发的表面态中动量分辨的量子干涉

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Surface states play essential roles in condensed matter physics, e.g., as model two-dimensional (2D) electron gases and as the basis for topological insulators. Here, we demonstrate quantum interference in the optical excitation of 2D surface states using the model system of C_(60)Au(111). These surface states are transiently populated and probed in a femtosecond time- and angle-resolved two-photon photoemission experiment. We observe quantum interference within the excited populations of these surface states as a function of parallel momentum vector. Such quantum interference in momentum space may allow one to control 2D transport properties by optical fields.
机译:表面态在凝聚态物理中起着至关重要的作用,例如,作为二维(2D)模型电子气体和拓扑绝缘体的基础。在这里,我们使用C_(60)Au(111)模型系统演示了二维表面态光激发中的量子干涉。这些表面状态在飞秒时间分辨和角度分辨的两个光子光发射实验中被瞬时填充并探测。我们观察到这些表面态的激发种群内的量子干扰是平行动量矢量的函数。动量空间中的这种量子干涉可以允许人们通过光场来控制2D传输特性。

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