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Spin-orbit interaction of light induced by transverse spin angular momentum engineering

机译:横向自旋角动量工程引起的光的自旋轨道相互作用

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The investigations on optical angular momenta and their interactions have broadened our knowledge of light’s behavior at sub-wavelength scales. Recent studies further unveil the extraordinary characteristics of transverse spin angular momentum in confined light fields and orbital angular momentum in optical vortices. Here we demonstrate a direct interaction between these two intrinsic quantities of light. By engineering the transverse spin in the evanescent wave of a whispering-gallery-mode-based optical vortex emitter, a spin-orbit interaction is observed in generated vortex beams. Inversely, this unconventional spin-orbit interplay further gives rise to an enhanced spin-direction locking effect in which waveguide modes are unidirectionally excited, with the directionality jointly controlled by the spin and orbital angular momenta states of light. The identification of this previously unknown pathway between the polarization and spatial degrees of freedom of light enriches the spin-orbit interaction phenomena, and can enable various functionalities in applications such as communications and quantum information processing.
机译:对光学角动量及其相互作用的研究拓宽了我们对亚波长范围内光的行为的了解。最近的研究进一步揭示了受限光场中的横向自旋角动量和光学涡旋中的轨道角动量的非凡特征。在这里,我们展示了这两个固有光量之间的直接相互作用。通过设计基于耳语画廊模式的光学涡旋发射器的e逝波中的横向自旋,可以在生成的涡旋束中观察到自旋轨道相互作用。相反,这种非常规的自旋轨道相互作用进一步提高了自旋方向的锁定效果,其中波导模式被单向激发,方向性由光的自旋和轨道角力矩状态共同控制。在光的偏振和空间自由度之间的这种先前未知的路径的识别丰富了自旋轨道相互作用现象,并且可以在诸如通信和量子信息处理的应用中实现各种功能。

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