• Photonics Research
  • Vol. 5, Issue 4, 299 (2017)
Xudong Liu, Xuequan Chen, Edward P. J. Parrott, and Emma Pickwell-MacPherson*
Author Affiliations
  • Department of Electronic Engineering, Chinese University of Hong Kong, Shatin, N.T., Hong Kong, China
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    DOI: 10.1364/PRJ.5.000299 Cite this Article Set citation alerts
    Xudong Liu, Xuequan Chen, Edward P. J. Parrott, Emma Pickwell-MacPherson. Exploiting a metal wire grating in total internal reflection geometry to achieve achromatic polarization conversion[J]. Photonics Research, 2017, 5(4): 299 Copy Citation Text show less

    Abstract

    We demonstrate how a metal wire grating can work as a 45° polarization converter, a quarter-wave retarder, and a half-wave retarder over a broadband terahertz range when set up in total internal reflection geometry. Classical electromagnetic theory is applied to understand the mechanism, and equations to calculate the polarization state of reflected light are derived. We use a metal grating with a period of 20 μm and width of 10 μm on a fused silica surface: linearly polarized terahertz light incident from fused silica with a supercritical incident angle of 52° is totally reflected by the metal grating and air. The polarization of the terahertz light is rotated by 45°, 90°, and circularly polarized by simply rotating the wire grating. The performance is achromatic over the measured range of 0.1–0.7 THz and comparable to commercial visible light wave retarders.
    E1x=0,(1)

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    H1xH2x=0,(2)

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    E1yE2y=0,(3)

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    rs=ErsEis=2n1cos2αicosαtsin2θn1cosαt(cos2θ+cos2αisin2θ)+n2cosαicosθ+n2cosαicos2αtsinθ1,(4)

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    rp=ErpEis=2n1cosαicosαtsinθcosθn1cosαt(cos2θ+cos2αisin2θ)+n2cosαicosθ+n2cosαicos2αtsinθ.(5)

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    rs=ErsEip=2n1cosαicosαtsinθcosθn1cosαt(cos2θ+cos2αisin2θ)+n2cosαicosθ+n2cosαicos2αtsinθ,(6)

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    rp=ErpEip=12n1cosαtcos2θn1cosαt(cos2θ+cos2αisin2θ)+n2cosαicosθ+n2cosαicos2αtsinθ.(7)

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    Xudong Liu, Xuequan Chen, Edward P. J. Parrott, Emma Pickwell-MacPherson. Exploiting a metal wire grating in total internal reflection geometry to achieve achromatic polarization conversion[J]. Photonics Research, 2017, 5(4): 299
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