论文标题

光子石墨烯中Dresselhaus自旋轨道相互作用的光学类似物

Optical analogue of Dresselhaus spin-orbit interaction in photonic graphene

论文作者

Whittaker, C. E., Dowling, T., Nalitov, A. V., Yulin, A. V., Royall, B., Clarke, E., Skolnick, M. S., Shelykh, I. A., Krizhanovskii, D. N.

论文摘要

量规场的概念在从粒子物理和宇宙学到凝结物质系统的许多物理领域中起着重要作用,在这些物理学系统中,仪表电位是作用于带电颗粒的电磁场的自然结果,并且在物质拓扑状态中至关重要。在这里,我们报告了蜂窝微腔晶格中光子的合成非亚伯仪表场的实验实现。我们表明,与TE-TM分裂相关的有效磁场具有分散剂中狄拉克点周围的Dresselhaus旋转轨道相互作用的对称性,并且可以被视为SU(2)量规场。该场的对称性在光学旋转霍尔效应(OSHE)中揭示了,在该效果下,光子伪卵蛋白围绕田间方向的Dirac Points repession的共振激发会导致形成两个旋转域。此外,我们观察到,Dresselhaus场更改了其在同一Dirac Valley中的符号,从而与紧密的结合建模非常吻合,将其从S转换为P频段。我们的工作展示了非亚伯仪表范围的光线,以在微观上进行照明,这为通过芯片上的自旋操纵光子铺平了道路。

The concept of gauge fields plays a significant role in many areas of physics from particle physics and cosmology to condensed matter systems, where gauge potentials are a natural consequence of electromagnetic fields acting on charged particles and are of central importance in topological states of matter. Here, we report on the experimental realization of a synthetic non-Abelian gauge field for photons in a honeycomb microcavity lattice. We show that the effective magnetic field associated with TE-TM splitting has the symmetry of Dresselhaus spin-orbit interaction around Dirac points in the dispersion, and can be regarded as an SU(2) gauge field. The symmetry of the field is revealed in the optical spin Hall effect (OSHE), where under resonant excitation of the Dirac points precession of the photon pseudospin around the field direction leads to the formation of two spin domains. Furthermore, we observe that the Dresselhaus field changes its sign in the same Dirac valley on switching from s to p bands in good agreement with the tight binding modelling. Our work demonstrating a non-Abelian gauge field for light on the microscale paves the way towards manipulation of photons via spin on a chip.

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