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Analysis of the vectorial diffraction characteristics of grating light modulators for MOEMS spectrometer

机译:MOEMS光谱仪光栅光调制器的矢量衍射特性分析

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Grating light modulators are the key wavelength scanning devices for a MOEMS spectrometer. In this paper, we build a vectorial diffraction model of grating light modulators theoretically based on Finite Beam Rigorous Coupled Wave Analysis theory. Then we calculate the diffraction efficiency of grating light modulators at the spectral range from 900nm to 1700nm. The numerical spectra indicate that the grating light modulators can realize wavelength scanning by changing the distance between the upper and the bottom layers. The grating light modulator can act as a programmable pixilated optical switch with high contrast. The diffraction efficiency is stable when the θ changes from -10 degrees to 10 degrees and the Φ changes from -30 degrees to 30 degrees. The effects of the bandwidth on the diffraction efficiency of the grating light modulators can be ignored. The average on state diffraction efficiency is 0.83 and the average off state diffraction efficiency is 0.05 when the grating light modulators chip has 256 pixels. The experimental results show that the vectorial diffraction model is more efficient than the scalar diffraction model.
机译:光栅光调制器是MOEMS光谱仪的关键波长扫描设备。在本文中,我们基于有限束严格耦合波分析理论建立了光栅光调制器的矢量衍射模型。然后,我们计算了从900nm到1700nm光谱范围的光栅光调制器的衍射效率。数值光谱表明,光栅光调制器可以通过改变上层和下层之间的距离来实现波长扫描。光栅光调制器可以用作具有高对比度的可编程像素化光开关。当θ从-10度变化到10度并且Φ从-30度变化到30度时,衍射效率是稳定的。带宽对光栅光调制器的衍射效率的影响可以忽略。当光栅光调制器芯片具有256个像素时,平均开态衍射效率为0.83,平均关态衍射效率为0.05。实验结果表明,矢量衍射模型比标量衍射模型更有效。

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