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椭圆形石墨烯薄片的光学对准

Optical alignment of oval graphene flakes.

作者信息

Mobini E, Rahimzadegan A, Alaee R, Rockstuhl C

出版信息

Opt Lett. 2017 Mar 15;42(6):1039-1042. doi: 10.1364/OL.42.001039.

Abstract

Patterned graphene, as an atomically thin layer, supports localized surface plasmon polaritons at mid-infrared or far-infrared frequencies. This provides a pronounced optical force/torque in addition to large optical cross sections and will make it an ideal candidate for optical manipulation. Here, we study the optical force and torque exerted by a linearly polarized plane wave on circular and oval graphene flakes (single layers of graphene). While the torque vanishes for circular flakes, the finite torque allows rotating and orienting oval flakes relative to the electric field polarization. Depending on the wavelength, the alignment is either parallel or perpendicular to the electric field vector. In our contribution, we rely on a full-wave numerical simulation and also on an analytical model that treats the graphene flakes in a dipole approximation. The presented results reveal a good level of control on the spatial alignment of graphene flakes subjected to far-infrared illumination.

摘要

图案化石墨烯作为一种原子级薄的层状材料,在中红外或远红外频率下支持局域表面等离激元极化激元。这除了能提供大的光学截面外,还能产生显著的光学力/扭矩,使其成为光学操控的理想候选材料。在此,我们研究了线偏振平面波对圆形和椭圆形石墨烯薄片(单层石墨烯)施加的光学力和扭矩。对于圆形薄片,扭矩为零,而有限的扭矩能使椭圆形薄片相对于电场极化方向旋转和定向。根据波长的不同,其排列方向要么与电场矢量平行,要么垂直。在我们的研究中,我们依赖全波数值模拟以及一个在偶极近似下处理石墨烯薄片的解析模型。所呈现的结果表明,在远红外光照下,对石墨烯薄片的空间排列具有良好的控制水平。

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Optical alignment of oval graphene flakes.椭圆形石墨烯薄片的光学对准
Opt Lett. 2017 Mar 15;42(6):1039-1042. doi: 10.1364/OL.42.001039.
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