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亚表面的光子自旋霍尔效应。

Photonic spin Hall effect at metasurfaces.

机构信息

National Science Foundation Nanoscale Science and Engineering Center, 3112 Etcheverry Hall, University of California at Berkeley, Berkeley, CA 94720, USA.

出版信息

Science. 2013 Mar 22;339(6126):1405-7. doi: 10.1126/science.1231758.

Abstract

The spin Hall effect (SHE) of light is very weak because of the extremely small photon momentum and spin-orbit interaction. Here, we report a strong photonic SHE resulting in a measured large splitting of polarized light at metasurfaces. The rapidly varying phase discontinuities along a metasurface, breaking the axial symmetry of the system, enable the direct observation of large transverse motion of circularly polarized light, even at normal incidence. The strong spin-orbit interaction deviates the polarized light from the trajectory prescribed by the ordinary Fermat principle. Such a strong and broadband photonic SHE may provide a route for exploiting the spin and orbit angular momentum of light for information processing and communication.

摘要

光的自旋霍尔效应(SHE)非常微弱,因为光子的动量和自旋轨道相互作用极小。在这里,我们报告了一种强的光子 SHE,导致在超表面上测量到极化光的大分裂。超表面上的相位不连续迅速变化,打破了系统的轴对称性,使圆偏振光的大横向运动能够被直接观察到,即使在正常入射时也是如此。强的自旋轨道相互作用使偏振光偏离了由普通费马原理规定的轨迹。这种强且宽带的光子 SHE 可能为利用光的自旋和轨道角动量进行信息处理和通信提供了一种途径。

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