Wakayama Toshitaka, Higashiguchi Takeshi, Sakaue Kazuyuki, Washio Masakazu, Otani Yukitoshi
School of Clinical Engineering, Faculty of Health and Medical Care, Saitama Medical University, 1397-1, Yamane, Hidaka, Saitama, 350-1241, Japan.
Department of Electrical and Electronic Engineering, Faculty of Engineering, Utsunomiya University, 7-1-2, Yoto, Utsunomiya, Tochigi, 321-8585, Japan.
Sci Rep. 2018 Jun 6;8(1):8690. doi: 10.1038/s41598-018-26964-7.
We demonstrate the creation of a vector beam by tailoring geometric phase of left- and right- circularly polarized beams. Such a vector beam with a uniform phase has not been demonstrated before because a vortex phase remains in the beam. We focus on vortex phase cancellation to generate vector beams in terahertz regions, and measure the geometric phase of the beam and its spatial distribution of polarization. We conduct proof-of-principle experiments for producing a vector beam with radial polarization and uniform phase at 0.36 THz. We determine the vortex phase of the vector beam to be below 4%, thus highlighting the extendibility and availability of the proposed concept to the super broadband spectral region from ultraviolet to terahertz. The extended range of our proposed techniques could lead to breakthroughs in the fields of microscopy, chiral nano-materials, and quantum information science.
我们通过调整左旋和右旋圆偏振光束的几何相位来展示矢量光束的产生。由于光束中仍存在涡旋相位,此前尚未证明能产生具有均匀相位的这种矢量光束。我们专注于涡旋相位抵消以在太赫兹区域产生矢量光束,并测量光束的几何相位及其偏振的空间分布。我们进行了原理验证实验,以在0.36太赫兹频率下产生具有径向偏振和均匀相位的矢量光束。我们确定该矢量光束的涡旋相位低于4%,从而突出了所提出概念在从紫外到太赫兹的超宽带光谱区域的可扩展性和实用性。我们所提出技术的扩展范围可能会在显微镜学、手性纳米材料和量子信息科学领域带来突破。