Fu Shiyao, Zhang Shikun, Gao Chunqing
School of Opto-Electronics, Beijing Institute of Technology, Beijing 100081, China.
Sci Rep. 2016 Aug 4;6:30765. doi: 10.1038/srep30765.
Bessel beams are widely used in optical metrology mainly because of their large Rayleigh range (focal length). Radial/azimuthal polarization of such beams is of interest in the fields of material processing, plasma absorption or communication. In this paper an experimental set-up is presented, which generates a Bessel-type vector beam with a spatial polarization, oscillating along the optical axis, when propagating in free space. A first holographic axicon (HA) HA1 produces a normal, linearly polarized Bessel beam, which by a second HA2 is converted into the spatial oscillating polarized beam. The theory is briefly discussed, the set-up and the experimental results are presented in detail.
贝塞尔光束因其较大的瑞利范围(焦距)而在光学计量中得到广泛应用。此类光束的径向/方位角偏振在材料加工、等离子体吸收或通信领域备受关注。本文介绍了一种实验装置,该装置能产生一种具有空间偏振的贝塞尔型矢量光束,当其在自由空间中传播时,偏振沿光轴振荡。第一个全息轴棱锥(HA)HA1产生一个普通的、线偏振的贝塞尔光束,该光束通过第二个HA2被转换为空间振荡偏振光束。文中简要讨论了相关理论,并详细介绍了实验装置和实验结果。