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Optimal implementation of a microspectrometer based on a single flat diffraction grating

机译:基于单个平面衍射光栅的显微光谱仪的最佳实现

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摘要

An analytical model has been developed and applied to explore the limits in the design of a highly miniaturized planar optical microspectrometer based on an imaging diffraction grating. This design tool has been validated as providing the smallest possible dimensions while maintaining acceptable spectral resolution. The resulting planar spectrometer is composed of two parallel glass plates, which contain all components of the device, including a reflective slit and an imaging diffraction grating. Fabrication is based on microelectromechanical system technology and starts with a single glass wafer; IC-compatible deposition and lithography are applied to realize the parts in aluminum, which makes the microspectrometer highly tolerant for component mismatch. The fabricated spectrometer was mounted directly on top of an image sensor and takes up a volume of only 50 mm(3). The measured spectral resolution of 6 rim (FWHM) in the 100 ran operating wavelength range (600-700 nm) is in agreement with a model calculation. (C) 2008 Optical Society of America.
机译:已经开发了一种分析模型,并将其用于探索基于成像衍射光栅的高度小型化平面光学显微仪的设计极限。该设计工具已经过验证,可以提供最小的尺寸,同时保持可接受的光谱分辨率。所得的平面光谱仪由两个平行的玻璃板组成,这些玻璃板包含设备的所有组件,包括反射狭缝和成像衍射光栅。制造基于微机电系统技术,并且从单个玻璃晶圆开始;应用与IC兼容的沉积和光刻技术来实现铝制零件,这使显微光谱仪对组件失配具有很高的容忍度。制成的光谱仪直接安装在图像传感器的顶部,仅占50 mm(3)。在100 nm工作波长范围(600-700 nm)中测得的6 rim(FWHM)光谱分辨率与模型计算一致。 (C)2008年美国眼镜学会。

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