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Creation of vector beams from a polarization diffraction grating using a programmable liquid crystal spatial light modulator and a q-plate.

机译:使用可编程液晶空间光调制器和q板从偏振衍射光栅创建矢量束。

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摘要

This thesis presents the ability of complete polarization control of light to create a polarization diffraction grating (PDG). This system has the ability to create diffracted light with each order having a separate high-order polarization state in one location on the optical axis. First, an external Excel program is used to create a grating phase profile from userspecified target diffraction orders. High-order vector beams in this PDG are created using a combination of two devices---a liquid crystal spatial light modulator (LC-SLM) manufactured by Seiko Epson, and a tunable q -plate from Citizen Holdings Co. The transmissive SLM is positioned in an optical setup with a reflective architecture allowing control over both the horizontal and vertical components of the laser beam. The SLM has its LC director oriented vertically only affecting the vertically polarized state, however, the optical setup allows modulation of both vertical and horizontal components by the use of a quarter-wave plate (QWP) and a mirror to rotate the polarizations 90 degrees. Each half of the SLM is encoded with an anisotropic phase-only diffraction grating which are superimposed to create a select number of orders with the desired polarization states and equally distributed intensity. The technique of polarimetry is used to confirm the polarization state of each diffraction order. The q-plate is an inhomogeneous birefringent waveplate which has the ability to convert zero-order vector beams into first-order vector beams. The physical placement of this device into the system converts the orders with zero-order polarization states to first-order polarization states. The light vector patterns of each diffraction order confirm which first-order polarization state of is produced. A specially made PDG sextuplicator is encoded onto the SLM to generate six diffraction orders with separate states of polarization.
机译:本文提出了对光进行完全偏振控制以产生偏振衍射光栅(PDG)的能力。该系统具有产生衍射光的能力,每个衍射光在光轴上的一个位置具有独立的高阶偏振态。首先,使用外部Excel程序根据用户指定的目标衍射阶数创建光栅相位轮廓。此PDG中的高阶矢量光束是使用以下两种设备的组合创建的:Seiko Epson制造的液晶空间光调制器(LC-SLM)和Citizen Holdings Co.的可调q板。定位在具有反射结构的光学装置中,可以控制激光束的水平和垂直方向。 SLM的LC指向矢垂直定向,仅影响垂直偏振态,但是,光学设置允许通过使用四分之一波片(QWP)和反射镜将偏振旋转90度来调制垂直分量和水平分量。 SLM的每一半都用各向异性的仅相位衍射光栅进行编码,这些衍射光栅叠加在一起以创建具有所需偏振态和均匀分布强度的选定数量级。偏振技术用于确认每个衍射级的偏振状态。 q板是一种不均匀的双折射波片,具有将零阶矢量光束转换为一阶矢量光束的能力。该设备在系统中的物理放置将零阶偏振态的阶转换为一阶偏振态。每个衍射级的光矢量图案确认产生了哪个一阶偏振态。特制的PDG六倍体被编码到SLM上,以产生具有独立偏振状态的六个衍射级。

著录项

  • 作者

    Badham, Katherine Emily.;

  • 作者单位

    San Diego State University.;

  • 授予单位 San Diego State University.;
  • 学科 Physics.
  • 学位 M.S.
  • 年度 2016
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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