论文标题

在电磁辐射的正常发生率下,kekulé延伸石墨烯的动力浮球光谱

Dynamical Floquet spectrum of Kekulé-distorted graphene under normal incidence of electromagnetic radiation

论文作者

Mojarro, M. A., Ibarra-Sierra, V. G., Sandoval-Santana, J. C., Carrillo-Bastos, R., Naumis, Gerardo G.

论文摘要

高频场通过电磁敷料会大大修饰狄拉克系统上的电子传输特性。在这里研究了它对石墨烯能量光谱的影响,并研究了两个可能的kekulé失真阶段(即kek-y和kek-o纹理)。使用浮雕理论,它显示了圆形极化光如何修饰kek-y纹理的无间隙光谱,从而在越野点处产生动力学带隙,取决于电场的振幅和频率,并破坏了kek-o文本的间隙光谱的山谷脱落性。为了进一步探索圆极化辐射下的电子特性,使用玻尔兹曼方法研究了直流电导率,并考虑了瓦尔利间和瓦利内部贡献。当考虑线性极化的光线时,两种纹理的带结构总是在垂直于电场的垂直方向上修饰。尽管Kek-Y纹理的频带结构保持无间隙,但Kek-O纹理的差距大大减少了。对于这种线性极化,还表明可以通过对光场参数的精确调整而出现非分散性带,从而诱导动力学定位。目前的结果表明,光学测量将允许区分不同的kekulé键纹理。

Electromagnetic dressing by a high-frequency field drastically modifies the electronic transport properties on Dirac systems. Here its effects on the energy spectrum of graphene with two possible phases of Kekulé distortion (namely, Kek-Y and Kek-O textures) are studied. Using Floquet theory it is shown how circularly polarized light modifies the gapless spectrum of the Kek-Y texture, producing dynamical band gaps at the Dirac point that depends on the amplitude and the frequency of the electric field, and breaks the valley degeneracy of the gapped spectrum of the Kek-O texture. To further explore the electronic properties under circularly polarized radiation, the dc conductivity is studied by using the Boltzmann approach and considering both inter-valley and intra-valley contributions. When linearly polarized light is considered, the band structure of both textures is always modified in a perpendicular direction to the electric field. While the band structure for the Kek-Y texture remains gapless, the gap for the Kek-O texture is reduced considerably. For this linear polarization it is also shown that non-dispersive bands can appear by a precise tuning of the light field parameters thus inducing dynamical localization. The present results suggest that optical measurements will allow to distinguish between different Kekulé bond textures.

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