Wang Junjie, Pu Mingbo, Jin Jinjin, Zhang Fei, Liu Ling, Kong Weijie, Li Xiong, Guo Yinghui, Luo Xiangang
State Key Laboratory of Optical Technologies on Nano-Fabrication and Micro-Engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China.
School of Optoelectronics, University of Chinese Academy of Sciences, Beijing 100049, China.
Materials (Basel). 2022 Apr 18;15(8):2940. doi: 10.3390/ma15082940.
We demonstrate the generation of a space-variant vector beam with catenary-shaped polarization states based on the polarization interferometry. With a spatial light modulator and a common path interferometric configuration, two orthogonally circularly polarized beams with different phase modulation overlap each other, yielding the vector beams. In addition, the polarization states of this vector beam are scalable to the arbitrary spatial distribution because of its great flexibility and universal applicability. It is expected that this vector beam may have many potential and intriguing applications in the micro/nano material processing, liquid crystal elements fabrication and optical micro-manipulation, and so on.
我们展示了基于偏振干涉测量法生成具有悬链线形状偏振态的空间变体矢量光束。利用空间光调制器和共光路干涉配置,两个具有不同相位调制的正交圆偏振光束相互重叠,产生矢量光束。此外,由于其极大的灵活性和普遍适用性,该矢量光束的偏振态可扩展到任意空间分布。预计这种矢量光束在微纳材料加工、液晶元件制造和光学微操纵等方面可能有许多潜在且有趣的应用。