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Photon-mediated electronic correlation effects in irradiated two-dimensional Dirac systems

机译:辐照二维DIRAC系统中的光子介导的电子相关效果

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摘要

Periodically driven systems can host many interesting phenomena. Two-dimensional Dirac systems irradiated by circularly polarized light are especially attractive thanks to the special absorption and emission of photons near Dirac cones. Here, letting the light travel in the two-dimensional plane, we treat the light-driven Dirac systems by using a unitary transformation, instead of usual Floquet theory, to capture the photon-mediated electronic correlation effects. In this approach, the direct electron-photon interaction terms can be removed and the resulting effective electron-electron interactions can produce important effects. The effective interactions can produce topological band structure in the case of irradiated 2D Dirac fermion system, and can lift the energy degeneracy of the Dirac cones for irradiated graphene. This method can be applied to other light-driven Dirac systems to investigate their photon-mediated electronic effects. These phenomena would be observed with ultraviolet light in some effective two-dimensional Dirac systems of honeycomb long-period superstructures.
机译:定期驱动的系统可以举办许多有趣的现象。由于Dirac锥附近的光子的特殊吸收和发射,通过圆偏振光照射的二维Dirac系统特别吸引。这里,让光线行驶在二维平面中,我们通过使用整体变换来处理光驱动的DIRAC系统,而不是通常的浮子理论,以捕获光子介导的电子相关效果。在这种方法中,可以去除直接电子 - 光子相互作用术语,并且所得到的有效电子相互作用可以产生重要效果。有效相互作用可以在照射的2D Dirac Fermion系统的情况下产生拓扑带结构,并且可以提升用于照射石墨烯的狄拉科锥的能量退化。该方法可以应用于其他光驱动的DIRAC系统,以研究它们的光子介导的电子效果。在蜂窝长期上部结构的一些有效的二维DIRAC系统中,通过紫外线观察这些现象。

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