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Broadband spatial optical filtering with a volume Bragg grating and a blazed grating pair

机译:带有体积布拉格光栅和闪耀光栅对的宽带空间光学滤波

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A broadband spatial optical filtering system is presented in this paper, which is composed of a Volume Bragg Grating (VBG) and a blazed grating pair. The diffraction efficiency and filtering properties are calculated and simulated by using Fourier diffraction analysis and Coupled Wave Theory. A blazed grating pair and VBG structures are designed and optimized in our simulation. The diffraction efficiency of filtering system shows more than 77.2% during the wavelength period from 953nm to 1153nm, especially 84.1% at the center wavelength. The beam quality is described with near-field modulation (M) and contrast ratio (C). The M of filtering beam are 1.44, 1.49 and 1.55, respectively and the C of filtering beam are 10.1%, 10.2% and 10.5% , respectively and the beam intensity distribution is great improved. The cut-off frequencies of three filtering systems are 1.57mm~(-1), 2.06 mm~(-1) and 2.38 mm(-1), respectively from power spectral density (PSD) curve. It's clear that the cut-off frequency of filtering system is closely related to the angular selectivity of VBG, and the value of cut-off frequency is decided by VBG's Half Width at First Zero (HWFZ) and center wavelength.
机译:本文提出了一种宽带空间光学滤波系统,该系统由体积布拉格光栅(VBG)和闪耀光栅对组成。利用傅里叶衍射分析和耦合波理论计算并模拟了衍射效率和滤波特性。在我们的仿真中设计并优化了闪耀光栅对和VBG结构。滤光系统的衍​​射效率在953nm至1153nm的波长范围内显示出77.2%以上,特别是在中心波长处的84.1%。光束质量通过近场调制(M)和对比度(C)来描述。滤波光束的M分别为1.44、1.49和1.55,滤波光束的C分别为10.1%,10.2%和10.5%,光束强度分布得到了很大的改善。从功率谱密度(PSD)曲线看,三个滤波系统的截止频率分别为1.57mm〜(-1),2.06mm〜(-1)和2.38mm(-1)。显然,滤波系统的截止频率与VBG的角度选择性密切相关,截止频率的值由VBG的“初零”半宽度(HWFZ)和中心波长决定。

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