论文标题

无序拓扑绝缘子传输动力学

Dynamics of transmission in disordered topological insulators

论文作者

Kang, Yuhao, Huang, Yiming, Genack, Azriel Z.

论文摘要

在这里,我们在对Haldane模型的模拟中表明,在不产生局部模式的整个带隙的中央部分中,无序拓扑绝缘子中的脉冲传播是可靠的。由于传输在拓扑绝缘子中是可靠的,因此必需场变量是传输场的相位,或者等效地是其光谱衍生物,即传输时间。除了与拓扑绝缘子的上部和下边缘近乎局部模式的近乎共鸣外,拓扑绝缘子中的传输时间与状态密度和样品中激发的能量成正比。在带边缘附近的无序TI中,平均传输时间得到了增强,并在频带间隙的中心稍微抑制。带有中度疾病的随机集合的带边缘的传输时间的方差主要由与局部状态的共振处的波动,最初四边形缩放。当不存在模式时,例如在频带间隙的中心,传输时间自我相对及其方差线性缩放。这会导致在传输时间中的样本到样本的显着波动。但是,由于传输时间是连续边缘模式的贡献之和,该模式在频带缝隙上延伸,并且在频带边缘附近的遥远模式,因此在频段间隙中心的传输时间范围内没有尖锐的特征。结果,超时的宽带脉冲忠实地传播到具有中度疾病和弯曲路径的拓扑绝缘体的带隙的中心。这允许在复杂的拓扑式元关节中进行稳健的信号传播,以在高速光电和电信中应用。

Here we show in simulations of the Haldane model that pulse propagation in disordered topological insulators is robust throughout the central portion of the band gap where localized modes do not arise. Since transmission is robust in topological insulators, the essential field variable is the phase of the transmitted field, or, equivalently, its spectral derivative, which is the transmission time. Except near resonances with bulk localized modes that couple the upper and lower edges of a topological insulator, the transmission time in a topological insulator is proportional to the density of states and to the energy excited within the sample. The average transmission time is enhanced in disordered TIs near the band edge and slightly suppressed in the center of the band gap. The variance of the transmission time at the band edge for a random ensemble with moderate disorder is dominated by fluctuations at resonances with localized states, and initially scales quadratically. When modes are absent, such as in the center of the band gap, the transmission time self-averages and its variance scales linearly. This leads to significant sample-to-sample fluctuations in the transmission time. However, because the transmission time is the sum of contributions from the continuum edge mode, which stretches across the band gap, and far-off-resonance modes near the band edge, there are no sharp features in the spectrum of transmission time in the center of the band gap. As a result, ultrashort, broadband pulses are faithfully transmitted in the center of the band gap of topological insulators with moderate disorder and bent paths. This allows for robust signal propagation in complex topological metawaveguides for applications in high-speed optoelectronics and telecommunications.

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