Li Wenjia, Liu Jianlong, Gao Yang, Zhou Keya, Liu Shutian
Opt Express. 2019 Sep 30;27(20):28194-28203. doi: 10.1364/OE.27.028194.
We present the photonic spin Hall effect on an ellipsoidal Rayleigh particle, which amounts to a polarization-dependent shift in scattering far-field. Based on the dipole model, we demonstrate that such shift is unavoidable when the light incidence is inclined with respect to the main axis of the ellipsoidal Rayleigh particle. The result has general validity and can be applied to metal and dielectric materials. In addition, the photonic spin Hall effect also manifests itself in the optical force and torque exerted on the particle, which is promising for precision metrology, spin-optics devices and optical driven micro-machines. Due to wide existence of the Rayleigh particles in nature, we believe that our findings might provide a useful toolset for investigating polarization-dependent scattering of particles.
我们展示了椭圆瑞利粒子上的光子自旋霍尔效应,这相当于散射远场中与偏振相关的位移。基于偶极子模型,我们证明当光入射相对于椭圆瑞利粒子的主轴倾斜时,这种位移是不可避免的。该结果具有普遍有效性,可应用于金属和介电材料。此外,光子自旋霍尔效应还体现在施加在粒子上的光力和光扭矩中,这对于精密计量、自旋光学器件和光驱动微机器很有前景。由于瑞利粒子在自然界中广泛存在,我们相信我们的发现可能为研究粒子的偏振相关散射提供一套有用的工具。