Lü Jia-Qi, Li Jin-Song, Guo Ji-Xiang, Zheng Ling-Fei, Liu Shuo
Appl Opt. 2024 Apr 1;63(10):2683-2688. doi: 10.1364/AO.519214.
Different from the scalar optical field with spatially uniform polarization, the vector optical field exhibits inhomogeneous distribution of polarization on the cross section. Manipulating the variation of polarization in a single optical beam is important to acquire a flexible and controllable focused optical field. Previous studies mainly focused on the vector optical field with its polarization varying along a circular trajectory of the Poincaré sphere. Here, we demonstrate the tight focusing behaviors of the vector optical field with the polarization varying along complex curves of the Poincaré sphere, which is generated by the joint modulation of azimuthal phase and amplitude distributions of orthogonally polarized components. The longitudinal polarization component with a multipolar pattern in rotational symmetry can be achieved with similar distribution of the total focused field. The transverse and longitudinal spin angular momentum distributions in the focal space are discussed. Approximately pure transverse spin angular momentum can be constructed and manipulated in the focal space, which provides the possibility to manipulate the 3D spin flux for the applications of nano and spin photonics.
与具有空间均匀偏振的标量光场不同,矢量光场在横截面上呈现出不均匀的偏振分布。操控单个光束中偏振的变化对于获得灵活且可控的聚焦光场至关重要。先前的研究主要集中在偏振沿庞加莱球的圆形轨迹变化的矢量光场。在此,我们展示了偏振沿庞加莱球的复杂曲线变化的矢量光场的紧聚焦行为,该矢量光场由正交偏振分量的方位角相位和幅度分布的联合调制产生。通过总聚焦场的类似分布可以实现具有旋转对称性的多极图案的纵向偏振分量。讨论了焦空间中的横向和纵向自旋角动量分布。在焦空间中可以构建和操控近似纯的横向自旋角动量,这为纳米和自旋光子学应用中操控三维自旋通量提供了可能性。