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Performance evaluation of photonic crystal ring resonators based optical channel add-drop filters with the aid of whispering gallery modes and their Q-factor

机译:借助回音壁模式及其Q因子评估基于光子晶体环形谐振腔的光通道分插滤波器的性能

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As a basic type of linear defects, the PhC ring resonators are considered the most fascinating elements to be used in photonics integrated circuits for applications such as dense wavelength division multiplexing and Optical filtering that are among the most important components of the telecommunication systems. This article proposes two different optical channel add-drop filters (CDFs) based on rod-type two-dimensional square-lattice all-circular photonic crystal ring resonator. In the studied ring-type PhC cavity, there are some modes that are analogous to whispering gallery (WG) modes. For the proposed all-circular PhC ring resonator, the WG-like mode with the azimuthal mode number m = 10, couples out from cavity to the drop waveguide. Although because of the absence of perfectly circular symmetry, these WG-like modes are not exactly degenerate but they form a close doublet. The normalized frequencies (a/λ) of the doublets of m = 10 are a/λ = 0.3684, and 0.3645 and their Q-factors are 1050, 866 respectively. By selecting appropriate coupling distance between the PhC ring resonator and side-coupled W_1 waveguide, the CDFs are formed. For a TM polarized Gaussian source, the drop efficiency of both filters is more than 99.8 % in the 1.535-1.625 μm wavelength interval. The photonic bandgap and the WG-like modes of the PhC ring resonator are calculated using the PWE method, and the Q-factor of modes and the transmission spectra of CDFs are calculated using 2D-FDTD method.
机译:作为线性缺陷的基本类型,PhC环形谐振器被认为是光电子集成电路中最令人着迷的元件,用于诸如电信系统最重要组成部分之类的密集波分复用和光学滤波等应用。本文提出了基于棒型二维方格全圆光子晶体环形谐振器的两种不同的光通道分插滤波器(CDF)。在研究的环形PhC腔中,有些模式类似于耳语画廊(WG)模式。对于所提出的全圆形PhC环形谐振器,方位模数为m = 10的类似WG的模从腔耦合到引入波导。尽管由于没有完美的圆形对称性,这些类似WG的模并没有完全退化,而是形成了紧密的双峰。 m = 10的双峰的归一化频率(a /λ)为a /λ= 0.3684和0.3645,它们的Q因子分别为1050、866。通过选择PhC环形谐振器和侧耦合W_1波导之间的适当耦合距离,可以形成CDF。对于TM偏振高斯光源,两个滤光片在1.535-1.625μm波长间隔内的下降效率均超过99.8%。使用PWE方法计算PhC环形谐振器的光子带隙和WG模式,并使用2D-FDTD方法计算模式的Q因子和CDF的透射光谱。

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