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Design and fabrication of high-density holographic gratings for DWDM applications

机译:用于DWDM应用的高密度全息光栅的设计与制造

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Comparing with thin film filters and arrayed waveguide gratings, holographic gratings can realize the highest channel capacity, the lowest insertion loss, etc., which are desirable for DWDM applications. In this paper, we have calculated the diffraction efficiencies of grating structures, such as rectangular, sinusoidal and symmetric triangular gratings with the technique of the rigorous coupled-wave analysis. The presumed conditions, such as TE- and TM- polarization, the aspect ratio of holographic gratings, have been investigated. It is shown that our results are in good agreement with other previous works. Further, we'e established an experimental setup for fabricating the planar binary holographic gratings. The gratings we'e made have a relatively high groove or line density (e.g., 600,900 and 1200 lines/mm), and they'e achieved high angular dispersion between each individual wavelength in their first diffraction order with relatively high transmitted diffraction efficiencies (e.g., for the 600 lines/mm grating, the efficiency is near 65%), which are able to demultiplex 1.31μm and 1.55μm wavelengths in CWDM (coarse wavelength division multiplexing). The fabricated high-density gratings should have important applications for DWDM in the near future.
机译:与薄膜过滤器和阵列波导光栅相比,全息光栅可以实现最高的信道容量,最低的插入损耗等,这对于DWDM应用是期望的。在本文中,我们已经计算了光栅结构的衍射效率,例如具有严格耦合波分析的技术的矩形,正弦和对称三角形光栅。已经研究了推定的条件,例如Te-and Tm偏振,全息光栅的纵横比。结果表明,我们的结果与其他以前的作品吻合良好。此外,我们建立了制造平面二进制全息光栅的实验设置。我们制造的光栅具有相对高的凹槽或线密度(例如,600,900和1200线/ mm),并且它们在其第一衍射顺序中的每个单独波长之间实现高角度色散,具有相对高的衍射效率(例如例如,对于600线/ mm光栅,效率接近65%),其能够在CWDM(粗波分复用)​​中解复用1.31μm和1.55μm波长。制造的高密度光栅应在不久的将来具有DWDM的重要应用。

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