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拓扑法拉第效应在磁性薄膜中的光学涡旋。

Topological Faraday Effect for Optical Vortices in Magnetic Films.

机构信息

V.I. Vernadsky Crimean Federal University, Vernadsky Prospekt, 4, Simferopol, 295007, Crimea.

Russian Quantum Center, Skolkovo, Moscow Region 143025, Russia.

出版信息

Phys Rev Lett. 2023 Apr 21;130(16):166901. doi: 10.1103/PhysRevLett.130.166901.

Abstract

Here we experimentally demonstrate the topological Faraday effect-the polarization rotation caused by the orbital angular momentum of light. It is found that the Faraday effect of the optical vortex beam passing through a transparent magnetic dielectric film differs from the Faraday effect for a plane wave. The additional contribution to the Faraday rotation depends linearly on the topological charge and radial number of the beam. The effect is explained in terms of the optical spin-orbit interaction. These findings underline the importance of using the optical vortex beams for studies of magnetically ordered materials.

摘要

在这里,我们通过实验演示了拓扑法拉第效应——由光的轨道角动量引起的偏振旋转。我们发现,通过透明磁性介电膜的光涡旋光束的法拉第效应与平面波的法拉第效应不同。法拉第旋转的附加贡献与光束的拓扑电荷和径向数线性相关。该效应可以用光学自旋-轨道相互作用来解释。这些发现强调了使用光涡旋光束研究磁性有序材料的重要性。

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