论文标题

三维拓扑绝缘子中的强场物理

Strong-field physics in three-dimensional topological insulators

论文作者

Baykusheva, Denitsa, Chacón, Alexis, Kim, Dasol, Kim, Dong Eon, Reis, David A., Ghimire, Shambhu

论文摘要

从理论上讲,我们研究了量子材料的拓扑 - 绝缘体类别中的强场状态。特别是,我们专注于从范式三维拓扑拓扑基绝缘子硒化(BI $ _2 $ SE $ _3 $)中的非扰动高阶谐波生成的过程。我们分别分析了自旋轨道耦合的大体状态和拓扑表面带的贡献,并揭示了它们的谐波产量如何取决于激光场的椭圆度的主要差异。随着椭圆度的增加,散装谐波显示其产量单调下降,以使人气体介质中高谐波产生的方式。然而,表面贡献表现出高度不平凡的依赖性,最终呈圆形极化场。我们将观察到的异常行为归因于:(i)dirac点附近的带偶极子偶极子的增强振幅和圆形图案; (ii)在哈密顿量中,高阶,“六边形翘曲”术语的影响,这些术语负责较高动量的能量表面的六边形变形。后者与自旋 - 轨道耦合参数直接相关。因此,我们的结果确定了强场驱动的高谐波发射对带结构拓扑的敏感性以及对自旋轨道相互作用的表现。

We investigate theoretically the strong-field regime of light-matter interactions in the topological-insulator class of quantum materials. In particular, we focus on the process of non-perturbative high-order harmonic generation from the paradigmatic three-dimensional topological insulator bismuth selenide (Bi$_2$Se$_3$) subjected to intense mid-infrared laser fields. We analyze the contributions from the spin-orbit-coupled bulk states and the topological surface bands separately and reveal a major difference in how their harmonic yields depend on the ellipticity of the laser field. Bulk harmonics show a monotonous decrease in their yield as the ellipticity increases, in a manner reminiscent of high harmonic generation in gaseous media. However, the surface contribution exhibits a highly non-trivial dependence, culminating with a maximum for circularly polarized fields. We attribute the observed anomalous behaviour to: (i) the enhanced amplitude and the circular pattern of the interband dipole and the Berry connections in the vicinity of the Dirac point; and (ii) the influence of the higher-order, "hexagonal warping" terms in the Hamiltonian, which are responsible for the hexagonal deformation of the energy surface at higher momenta. The latter are associated directly with spin-orbit-coupling parameters. Our results thus establish the sensitivity of strong-field driven high harmonic emission to the topology of the band structure as well as to the manifestations of spin-orbit interaction.

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