On tailoring of the flat-top response of photonic crystal based optical filter

S. Dasgupta, C. Bose
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引用次数: 2

Abstract

In this paper, the flat top spectral characteristic of a photonic crystal based optical filter is tailored through proper insertion of defects within the crystal structure. Such tailoring is essential for accommodating the shift in channel wavelength. Estimated defects are incorporated here through proper extension in dielectric layers of specific unit cells. The distribution of such defect regions within the filter structure is crucial in determining the flatness of the filter pass band. Performance of the flat top filter is analyzed using transfer matrix method and a condition regarding distribution of defects within the filter is derived. The flat top pass band, provided by our proposed model, can support the shifts of signal wavelength in an allotted channel within its permissible limit, which is specified as 12–14 nm by ITU-T Recommendation G.694.2 for a coarse wavelength division multiplexing (CWDM) system.
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基于光子晶体的滤光片平顶响应的裁剪
在本文中,通过在晶体结构中适当插入缺陷来定制基于光子晶体的光学滤波器的平顶光谱特性。这种裁剪对于适应信道波长的偏移是必不可少的。通过在特定单元胞的介电层中进行适当的扩展,将估计的缺陷纳入其中。这些缺陷区域在滤波器结构中的分布对于确定滤波器通带的平坦度至关重要。利用传递矩阵法对平顶滤波器的性能进行了分析,导出了缺陷在平顶滤波器内分布的条件。我们提出的模型提供的平顶通频带可以在其允许的限制范围内支持分配信道中信号波长的移位,ITU-T建议G.694.2对粗波分复用(CWDM)系统规定的允许范围为12-14 nm。
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