Fabrication of a Polymeric Planar Nano-diffraction Grating with Nonuniform Pitch for an Integrated Spectrometer Module

IF 0.1 Q4 OPTICS
H. Kim, Seung-Hun Oh, Hyunjong Choi, Junhyuk Park, Hyun-Yong Lee
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Abstract

This paper presents the design and fabrication of a planar nano-diffraction grating for an integrated miniature spectrometer module. The proposed planar nano-diffraction grating consists of nonuniform periods, to focus the reflected beams from the grating’s surface, and an asymmetrical V-shaped groove profile, to provide uniform diffraction efficiency in the wavelength range from 400 to 650 nm. Also, to fabricate the nano-diffraction grating using low-cost UV-NIL technology, we analyzed the FT-IR spectrum of a uv-curable resin and optimized the conditions for the UV curing process. Then, we precisely fabricated the polymeric nano-diffraction grating within 5 nm in dimensional accuracy. The integrated spectrometer module using the fabricated polymeric planar nano-diffraction grating provides spectral resolution of 5 nm and spectral bandwidth of 250 nm. Our integrated spectrometer module using a polymeric planar nano-diffraction grating serves as a quick and easy solution for many spectrometric applications.
用于集成光谱仪模块的非均匀节距聚合物平面纳米衍射光栅的制备
本文介绍了用于集成微型光谱仪模块的平面纳米衍射光栅的设计与制作。本文提出的平面纳米衍射光栅由非均匀周期组成,用于聚焦来自光栅表面的反射光束,以及不对称的v型槽轮廓,在400 ~ 650 nm波长范围内提供均匀的衍射效率。此外,为了利用低成本UV- nil技术制备纳米衍射光栅,我们分析了一种紫外光固化树脂的FT-IR光谱,并优化了紫外光固化工艺的条件。然后,我们在尺寸精度为5 nm的范围内精确制作了聚合物纳米衍射光栅。该集成光谱仪模块采用自制的聚合物平面纳米衍射光栅,光谱分辨率为5 nm,光谱带宽为250 nm。我们的集成光谱仪模块采用聚合物平面纳米衍射光栅,可作为许多光谱应用的快速简便的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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