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首页> 外文期刊>Journal of the Korean Physical Society >Fabrication of a bilayer wire grid polarizer in the near infrared wavelength region by using a UV curing nanoimprinting method
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Fabrication of a bilayer wire grid polarizer in the near infrared wavelength region by using a UV curing nanoimprinting method

机译:通过使用紫外固化纳米压印法在近红外波长范围内制造双层线栅偏振器

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摘要

In this study, we have designed and fabricated an Al bilayer wire grid polarizer (B-WGP) in the near-infrared wavelength region. A finite difference time domain method was employed to design and analyze the subwavelength B-WGP with a period of 450 nm, a grating height of 150 nm, and a duty cycle of 0. 5. The high polarization extinction ratio of 1200 indicates that the B-WGP may be used as a normal incidence polarization beam splitter. A subwavelength polymer pattern was fabricated by using an UV curing nanoimprinting method, and an Al thin film was deposited by using a thermal evaporation method. The experimental results show that the transmittance of the TM-wave of the B-WGP is over 50% at wavelengths in the range 1000 ~ 2000 nm wavelength while the transmittance of the TE-wave is less than 1%, and that the polarization extinction ratio 250. The discrepancies between the simulated and the experimental results are discussed.
机译:在这项研究中,我们设计和制造了一个在近红外波长区域的Al双层线栅偏振器(B-WGP)。采用时域有限差分法设计和分析周期为450 nm,光栅高度为150 nm,占空比为0的亚波长B-WGP。5.高偏振消光比1200表示B-WGP可以用作法向入射偏振分束器。通过使用紫外线固化纳米压印方法制造亚波长聚合物图案,并通过热蒸发方法沉积Al薄膜。实验结果表明,B-WGP的TM波在1000〜2000 nm波长范围内的透射率超过50%,而TE波的透射率小于1%,且偏振消光比率250。讨论了模拟结果与实验结果之间的差异。

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