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A Multi-domain Full-Stokes Polarization Modulator that is Efficient for 300-2500 nm Spectropolarimetry

机译:多域全斯托克斯偏振调制器,可有效实现300-2500 nm光谱极化

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摘要

We present the design and prototyping results for an ultra-wideband rotating polarization modulator that consists of a stack of quartz plates. The plate thicknesses and orientations were optimized such that after rotation of the modulator to 6 different angles before a polarization analyzer, the full Stokes vector can be optimally determined at all wavelengths from 300 to 2500 nm. Additional optimization parameters include minimal variation of the retardance with incidence angle and temperature, and the suppression of polarized spectral fringes for a spectral resolution of 10,000. The prototype modulator's design was re-optimized after the production and measurement of each individual quartz plate. We present the performance of the as-built prototype. To eliminate aliasing with inherent temporal variations of the source, the modulator can be used together with a polarizing beam-splitter ("dual-beam" approach). Because of the large sinusoidal spectral variations of the polarization modulation, this modulator can also be considered a "spectral modulator for channeled spectropolarimetry". Therefore, at each modulation state, spectrally resolved polarization information can also be extracted directly, although at limited spectral resolution. We use this modulator as an example of a "multi-domain polarization modulator", and outline a general approach for optimally storing polarization information in all available measurement dimensions (temporal, spatial, spectral), and rendering the overall polarization measurement independent from systematic effects in any of these dimensions.
机译:我们介绍了由一堆石英板组成的超宽带旋转偏振调制器的设计和原型设计结果。优化了板的厚度和方向,以便在偏振分析仪之前将调制器旋转到6个不同的角度之后,可以在300至2500 nm的所有波长下最佳确定完整的斯托克斯矢量。其他优化参数包括延迟随入射角和温度的最小变化,以及对光谱分辨率为10,000的偏振光谱条纹的抑制。在生产和测量每个单独的石英板之后,对原型调制器的设计进行了重新优化。我们介绍了建成原型的性能。为了消除源固有的时间变化引起的混叠,可以将调制器与偏振分束器一起使用(“双光束”方法)。由于偏振调制的正弦频谱变化较大,因此该调制器也可以被视为“用于通道光谱偏振法的光谱调制器”。因此,尽管光谱分辨率有限,但在每个调制状态下,也可以直接提取光谱分辨的偏振信息。我们将这种调制器用作“多域偏振调制器”的示例,并概述了一种通用方法,该方法可在所有可用的测量维度(时间,空间,光谱)中最佳地存储偏振信息,并使整个偏振测量不受系统影响这些维度中的任何一个。

著录项

  • 来源
    《Polarization science and remote sensing VII》|2015年|96130G.1-96130G.16|共16页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Sterrewacht Leiden, Universiteit Leiden, Niels Bohrweg 2, 2333 CA, Leiden, the Netherlands;

    Sterrewacht Leiden, Universiteit Leiden, Niels Bohrweg 2, 2333 CA, Leiden, the Netherlands,Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA 91109, USA;

    School of Engineering and IT, University of New South Wales Canberra, Canberra 2610 ACT, Australia,College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., PO Box 210094, Tucson, AZ 85721-0094, USA;

    College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., PO Box 210094, Tucson, AZ 85721-0094, USA;

    School of Engineering and IT, University of New South Wales Canberra, Canberra 2610 ACT, Australia,College of Optical Sciences, Univ. of Arizona, 1630 E. University Blvd., PO Box 210094, Tucson, AZ 85721-0094, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    polarimetry;

    机译:旋光法;

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