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Design optimization of volume holographic gratings for wavelength filters

机译:用于波长滤波器的体全息光栅的设计优化

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Volume holography is promising for devices such as wavelength filters. However, in previously reported work with these holographic devices the diffraction efficiency and wavelength selectivity were not so satisfactory, which affected the insertion loss and channel spacing of the device respectively. In order to investigate the performances for most of the volume holographic devices which are of finite size and with 90 degree geometry, two-dimensional (2-D) coupled-wave theory is more accurate than that based on the well-known Kogelnik's coupled-wave theory. In this paper a close-form analytical solution to 2-D coupled wave theory for 2-D restricted gratings is presented firstly. Then in order to achieve the optimum insertion loss and channel spacing for dense wavelength division multiplexing (DWDM) filters, diffraction properties, especially effects of the grating strength and grating size ratio on the peak diffraction efficiency and wavelength selectivity are researched based on the 2-D coupled-wave theory and its solution. The results show that this solution is capable of design optimization of volume holographic gratings for various devices, including wavelength filters. And the design optimization is given in order to gain the optimum peak diffraction efficiency and wavelength selectivity. Finally, some experimental results showing the angular selectivity for different grating size ratio are given, which agree well with the 2-D coupled-wave theory.
机译:体全息术有望用于波长滤波器等设备。然而,在先前报道的使用这些全息设备的工作中,衍射效率和波长选择性不能令人满意,这分别影响了设备的插入损耗和通道间隔。为了研究大多数体积有限且具有90度几何形状的体积全息设备的性能,二维(2-D)耦合波理论要比基于著名的Kogelnik的耦合全息理论更准确。波动理论。本文首先针对二维受限光栅提出了二维耦合波理论的近似形式解析解。然后,为了获得用于密集波分复用(DWDM)滤波器的最佳插入损耗和通道间距,基于2-研究了衍射特性,特别是光栅强度和光栅尺寸比对峰值衍射效率和波长选择性的影响。 D耦合波理论及其解决方案。结果表明,该解决方案能够优化各种设备(包括波长滤光片)的体积全息光栅的设计。并进行了设计优化,以获得最佳的峰衍射效率和波长选择性。最后,给出了一些实验结果,表明了不同光栅尺寸比下的角度选择性,这与二维耦合波理论非常吻合。

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