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Etched diffraction grating with one-dimensional photonic crystal bandgap theory

机译:具有一维光子晶体带隙理论的蚀刻衍射光栅

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Etched diffraction grating (EDG) with Bragg reflectors based demultiplexer offers advantages of low insertion loss, compact size and tolerant process, which has been the focus of a great deal of research. The Bragg reflector, consisting of alternating dielectric layers coupled to a homogeneous medium, is a kind of one-dimensional photonic crystal (1-D PC). This paper proposed a design method based on 1-D PC theory to design Bragg-EDG. With this design method, the reflection condition calculated by the 1 -D PC theory can be matched perfectly with the diffraction condition. As a result, the shift of central wavelength of diffraction spectra can be improved, while keeping high diffraction efficiency. With a small number of dielectric layers, a Bragg-EDG with broad bandwidth, good channel uniformity and low next-channel crosstalk level can be obtained. Performances of Bragg-EDG for TE and TM-mode are also investigated, and the result shows that the grating by this method has a small polarization dependent loss. The reflection bandwidth of the TE-mode is greater than that of the TM-mode; while for the diffraction efficiency, TM-mode performs better. An analysis of etching deviation was also carried on to study the effect of fabrication errors on the performance of the grating. Simulation results indicate that the diffraction grating designed by this approach is very tolerant concerning fabrication imperfections, and a 10% deviation of the width of the etched trench does not lead to a significant decrease in reflection and diffraction efficiencies of the grating at designed work band.
机译:蚀刻衍射光栅(EDG)基于Bragg反应器的解复用器提供了低插入损耗,紧凑尺寸和耐受工艺的优点,这是大量研究的焦点。由耦合到均匀介质的交替介电层组成的布拉格反射器是一种一维光子晶体(1-D PC)。本文提出了一种基于1-D PC理论的设计方法,以设计Bragg-EDG。利用这种设计方法,由1 -D PC理论计算的反射条件可以与衍射条件完美地匹配。结果,可以改善中心波长的衍射光谱的偏移,同时保持高衍射效率。通过少量介电层,可以获得具有宽带宽,良好通道均匀性和低下沟道串扰水平的布拉格-EDG。还研究了TE和TM模式的布拉格-EDG的性能,结果表明该方法的光栅具有小的偏振依赖性损耗。 TE模式的反射带宽大于TM模式的反射带宽;虽然对于衍射效率,TM模式执行更好。还进行了对蚀刻偏差的分析,研究了制造误差对光栅性能的影响。模拟结果表明,通过该方法设计的衍射光栅是非常容忍的关于制造缺陷的耐受性,并且蚀刻沟槽的宽度的10%偏差不会导致在设计的工作带上的光栅的反射和衍射效率的显着降低。

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