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Planar rotation of electric field induced by edge-plasmon in a graphene nanoribbon

机译:石墨烯纳米边上的边上等离子诱导电场的平面旋转

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摘要

The presence of an edge in a two-dimensional (2D) material can induce an accumulation of charges near the edge by the electric field Similar to the 2D plasmon, the accumulated charges can oscillate collectively, forming a distinct plasmon mode, which is called edge-plasmon. In contrast to the 2D plasmon, the electric potential of the edge-plasmon is localized near the edge. In this work, we discuss the edge-plasmon in a 2D material with finite width, such as a graphene nanoribbon, and we find that the localization of the electric field to the edge induces a phase difference of pi/2 between electric fields in the directions parallel and perpendicular to the edge. As a result, the induced electric field rotates on the surface and also induces rotating current, which does not exist in the 2D plasmon. The edge-plasmon can be excited by incident light, and we predict that the rotating current generates rotation of the electric field of the scattered light.
机译:二维(2D)材料中的边缘的存在可以通过类似于2D等离子体的电场诱导边缘附近的电荷累积,累积电荷可以集体振荡,形成不同的等离子体模式,称为边缘 -Plasmon。 与2D等离子体相比,边缘等离子体的电位在边缘附近局部化。 在这项工作中,我们在具有有限宽度(例如石墨烯纳米)中的2D材料中讨论边缘等离子,并且我们发现电场的定位在边缘引起电场之间的PI / 2的相位差 方向平行和垂直于边缘。 结果,诱导的电场在表面上旋转,并且还诱导旋转电流,其在2D等离子体中不存在。 可以通过入射光激发边缘等离子体,并且我们预测旋转电流产生散射光的电场的旋转。

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