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Chromatic dispersion characteristics of holographic multiple-channel demultiplexers

机译:全息多通道解复用器的色散特性

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We examine and characterize a wavelength demultiplexer using a holographic grating for WDM multiple-channel applications. The holographic grating is a kind of volume grating recorded in a photopolymer, which is different from the general surface relief type diffraction gratings. The holographic grating disperses the wavelength components of incident wave into spatial domain so that through the coupling optics, different wavelength channels can be separated to the different output optical fibers. The characteristics of the polymeric holographic grating are compared to (hose of the relief type diffraction gratings. Overall demuliplexer characteristics is characterized by applying first order Born approximation with electro-magnetic vectorial analysis. It shows that the amplitude and group velocity (i.e., the chromatic dispersion) characteristics are determined by the holographic grating phase structure and out-coupling optics lens aberrations. The out-coupling lens aberration effect to the chromatic dispersion is examined and classified according to the lens aberration classification. The holographic grating phase perturbation (i.e., chirping) can be used to minimize the lens aberration caused chromatic dispersion to improve the demultiplexer performance. The demultiplexer polarization dependent loss is also examined in relation to the spatial dispersion and diffraction efficiency characteristics.
机译:我们使用WDM多通道应用的全息光栅检查和表征波长解复用器。全息光栅是一种记录在光聚合物中的体光栅,它不同于一般的表面浮雕型衍射光栅。全息光栅将入射波的波长分量分散到空间域中,以便通过耦合光学器件,可以将不同的波长通道分离到不同的输出光纤。将聚合物全息光栅的特性与(浮雕型衍射光栅的软管)特性进行了比较。通过使用一阶Born近似和电磁矢量分析来表征整体解复用器特性。它显示出振幅和群速度(即色度)。色散特性由全息光栅的相结构和出射光学透镜像差确定,检查出出透镜的像差对色散的影响,并根据透镜像差分类进行分类。全息光栅的相位摄动(即chi) )可用于最小化由透镜像差引起的色散,从而改善解复用器性能;还检查了解复用器偏振相关的损耗与空间色散和衍射效率特性的关系。

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