论文标题

大规模各向异性倾斜狄拉克系统的光学特性

Optical properties of massive anisotropic tilted Dirac systems

论文作者

Mojarro, M. A., Carrillo-Bastos, R., Maytorena, Jesús A.

论文摘要

我们探讨了山谷应对差距在二维各向异性倾斜的狄拉克系统的光学响应中的效果。我们研究了通过状态的关节密度(JDOS),光电导率张量和drude光谱重量的内标和带间跃迁的光谱。能带呈现每个山谷中的间接差距。因此,Fermi级别的位置(一个``间接区域'')和允许过渡的动量空间打开了新的可能性。每个间隙附近的JDO显示了一组三个van Hove奇异性,与Gapped石墨烯(仅吸收边缘)或8- $ PMMN $ BOOROPHENE(由于倾斜引起的两个Inter带临界点)形成鲜明对比。对于位于间隙中的费米级别,JDOS显示了通常的线性依赖性,而当间接区域以上时,它看起来与硼苯壳体相似。这些光谱特征决定了光导率的突出结构。纵向电导率说明了光学响应的​​强各向异性。同样,Drude的重量是各向异性的,并显示了非线性依赖对费米水平的区域。山谷对称性的破裂导致有限的大厅响应和相关的光学特性。由于间接区域,异常和山谷大厅的电导率表现出具有特征性修饰的石墨烯样行为。几乎是完美的圆形二色性可以通过使用适当的费米级位置调整激动人心的频率来实现。我们还计算了光学不透明度和极化旋转的光谱,在某些情况下,它们可以达到十分之一的弧度。计算出的响应特性的光谱特征是倾斜和质量同时存在的签名,并提出了确定此类狄拉克系统中不同间隙形成的光学方法。

We explore the effect of valley-contrasting gaps in the optical response of two-dimensional anisotropic tilted Dirac systems. We study the spectrum of intraband and interband transitions through the joint density of states (JDOS), the optical conductivity tensor, and the Drude spectral weight. The energy bands present an indirect gap in each valley. Thus a new possibility opens for the position of the Fermi level (an ``indirect zone''), and for the momentum space for allowed transitions. The JDOS near each gap displays a set of three van Hove singularities which are in contrast to the case of gapped graphene (an absorption edge only) or 8-$Pmmn$ borophene (two interband critical points due to the tilt). For the Fermi level lying in the gap, the JDOS shows the usual linear dependence on frequency, while when above an indirect zone it looks similar to the borophene case. These spectral characteristics determine the prominent structure of the optical conductivity. The longitudinal conductivity illustrates the strong anisotropy of the optical response. Similarly, the Drude weight is anisotropic and shows regions of nonlinear dependence on the Fermi level. The breaking of valley symmetry leads to a finite Hall response and associated optical properties. The anomalous and valley Hall conductivities present graphene-like behavior with characteristic modifications due to the indirect zones. Almost perfect circular dichroism can be achieved by tuning the exciting frequency with an appropriate Fermi level position. We also calculate the spectra of optical opacity and polarization rotation, which can reach magnitudes of tenths of radians in some cases. The spectral features of the calculated response properties are signatures of the simultaneous presence of tilt and mass and suggest optical ways to determine the formation of different gaps in such class of Dirac systems.

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