单超表面平行偏振态的产生与测量(会议报告)

N. Rubin, Aun Zaidi, M. Juhl, Ruoping Li, Balthasar Mueller, R. Devlin, K. Leosson, F. Capasso
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引用次数: 0

摘要

在偏振法中,即四分量偏振斯托克斯矢量的测量,测量必须由四个(或更多)连续强度测量组成,牺牲时间分辨率,或者包含四个独立的光路,每个光路都有单独的偏振光学器件,增加体积,成本和系统复杂性。类似的问题也存在于偏振光学技术中。超表面,即相移元件的纳米光子阵列,已经成为偏振光学研究的新平台。这些单独的移相器可以设计成具有特征的各向异性,因此具有可调的形状双折射。因此,超表面可以作为亚波长间隔的纳米波片阵列。我将描述如何通过相对简单的优化方法,设计产生任意指定偏振态的超表面(当用已知偏振的光照射时)。这种功能相当于一个传统的衍射光栅与每个顺序单独的波片光学;在这里,所有必要的偏振光学元件都可以集成到一个扁平的超薄光学元件中。此外,这种超表面可以在反向配置中用作平行快照偏振计,而不需要额外的偏振光学器件(除了单个偏振器)。我提出了一个详细的实验表征这两个概念在可见光谱区域和性能的超表面与市售的旋转波片偏振计的比较。由于没有大块双折射晶体光学器件,可以用集成的、可扩展的、廉价的设备进行平行的、全偏振的状态测量。鉴于其衍射性质,设计自然延伸到分光偏振法和偏振成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parallel polarization state generation and measurement with a single metasurface (Conference Presentation)
In polarimetry, that is, a measurement of the four-component polarization Stokes vector, a measurement must either consist of four (or more) sequential intensity measurements, sacrificing time resolution, or contain four separate light paths each with separate polarization optics, increasing bulk, cost, and system complexity. Similar issues present difficulty across polarization optics technology. Metasurfaces, nanophotonic arrays of phase shifting elements, have emerged as a novel platform for polarization optics. These individual phase shifters can be designed with a characteristic anisotropy, and are thus imbued with tunable shape birefringence. A metasurface, then, can function as a subwavelength spaced array of nanoscale waveplates. I will describe how, through relatively simple optimization methods, a metasurface producing arbitrarily specified polarization states (when illuminated with light of a known polarization) can be designed. This functionality is equivalent to a traditional diffraction grating with individual waveplate optics on each order; here, all the necessary polarization optics can be integrated into a flat, ultrathin optical element. Moreover, such a metasurface can be used in a reverse configuration as a parallel snapshot polarimeter with no need for additional polarization optics (save for a single polarizer). I present a detailed experimental characterization of both concepts in the visible spectral region and a comparison of the performance of the metasurface to a commercially available rotating waveplate polarimeter. With no bulk birefringent crystal optics, a parallel, full-polarization state measurement can be made with an integrated, scalable, and inexpensive device. Given its diffractive nature, the design naturally extends to spectropolarimetry and polarization imaging.
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