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Dynamical polarization and the optical response of silicene and related materials

机译:硅及相关材料的动态极化和光学响应

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摘要

We discuss the dynamical polarization and optical response in low-frequency regime under in-plane polarized driving field of the silicene. The dynamical polarization, dielectric function, and absorption of radiation in infrared region are obtained and shown intuitively in the momentum-frequency space. They are found distinguishing for the cases that chemical potential larger than the band gap and chemical potential smaller than the band gap. The optical properties of silicene and the related group-V and group-VI materials: MoS2and black phosphorus are explored through the first-principle study. The plasmon, which is a collective mode, damped into the electron-hole pair in the single-particle excitation regime, and the spin/valley polarized electron-hole pairs can also be formed through this way, especially for the high-energyπ-plasmon which begin to damp even in the long-wavelength limit. The plasmon can also be observed in the spectrum of the energy-loss function in infrared region. The anisotropic effect due to the warping structure or the charged impurity, and the anisotropic polarization due to the polarized incident light are also been discussed. Our results exhibit the great potential in the spintronic and optoelectronic applications of the materials we discussed.
机译:我们讨论了硅的面内极化驱动场下低频状态下的动态极化和光学响应。在动量频率空间中获得并直观地显示了动态偏振,介电函数和红外区域中的辐射吸收。发现它们对于化学势大于带隙且化学势小于带隙的情况是有区别的。通过第一性原理研究,研究了硅以及相关的Ⅴ族和Ⅵ族材料:MoS2和黑磷的光学性质。在单粒子激发态中,作为共模的等离激元被衰减到电子-空穴对中,并且自旋/谷极化电子-空穴对也可以通过这种方式形成,特别是对于高能π-等离激元即使在长波长范围内也开始衰减。还可以在红外区域的能量损失函数的光谱中观察到等离子体激元。还讨论了由于翘曲结构或带电杂质引起的各向异性效应,以及由于偏振入射光引起的各向异性偏振。我们的结果在我们讨论的材料的自旋电子和光电应用中显示出巨大的潜力。

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