论文标题

真实空间光学涡流的自发产生和主动操纵

Spontaneous generation and active manipulation of real-space optical vortex

论文作者

Kim, Dongha, Baucour, Arthur, Choi, Yun-Seok, Shin, Jonghwa, Seo, Min-Kyo

论文摘要

光涡度具有光子的轨道性质,该光子在光子应用中提供了额外的自由度。与其他物理实体中的涡流不同,光学涡旋需要结构性奇异性,这限制了它们的能力在动态和互动特征方面。在这项研究中,我们介绍了自发产生和外部磁场诱导的光涡流和抗Vortex的操纵。由Al/SiO2/Ni/Sio2多层结构组成的梯度厚度光腔(GTOC),取决于Ni层的磁化效应,实现了微不足道和非平凡的拓扑相之间的明显跃迁。在非平凡的拓扑阶段,在反射光中产生光学涡流和抗Vortex对的数学奇异性存在于顶部和底部SiO2层的厚度的广义参数空间中,这是对GTOC的真实空间的生物。与GTOC中的磁化,光学涡流和抗Vortex相结合,在外部磁场下显示出有效的自旋轨道相互作用,并在外部磁场下显示出拓扑依赖性动力学。我们预计,光学涡度的现场诱导的工程将为研究拓扑光子相互作用及其应用铺平道路。

Optical vortices host the orbital nature of photons, which offers an extra degree of freedom in photonic applications. Unlike vortices in other physical entities, optical vortices require structural singularities, which restrict their abilities in terms of dynamic and interactive characteristics. In this study, we present the spontaneous generation and external magnetic field-induced manipulation of an optical vortex and antivortex. A gradient-thickness optical cavity (GTOC) consisting of an Al/SiO2/Ni/SiO2 multilayer structure realised the distinct transition between the trivial and non-trivial topological phases, depending on the magneto-optic effects of the Ni layer. In the non-trivial topological phase, the mathematical singularities generating the optical vortex and antivortex pair in the reflected light existed in the generalised parameter space of the thicknesses of the top and bottom SiO2 layers, which is bijective to the real space of the GTOC. Coupled with the magnetisation, the optical vortex and antivortex in the GTOC experienced an effective spin-orbit interaction and showed topology-dependent dynamics under external magnetic fields. We expect that field-induced engineering of optical vortices will pave the way for the study of topological photonic interactions and their applications.

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