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Two dimensional photonic crystal ring resonator based bandpass filter

机译:基于二维光子晶环谐振器的带通滤波器

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A two dimensional Photonic Crystal Bandpass Filter (2D-PCBPF) is designed by exploiting coupling between the waveguide and circular Photonic Crystal Ring Resonator (PCRR). By adjusting the dielectric constant of the structure and the radius of the coupling rod, the output efficiency is investigated. The normalized transmission spectra of circular PCRR have been studied using Finite Difference Time Domain (FDTD) method. The Photonic Bandgap (PBG) has been calculated by Plane Wave Expansion (PWE) method. Approximately 100% output efficiency is observed over the wavelength ranges from 1510 nm to 1520 nm through this simulation. We further investigated parameters which affect the resonant wavelength and output efficiency of these proposed PCBPF. The important parameters consider for this studies are number of rods in the reflector, scatterer rods around the cavity and size of the cavity.
机译:通过利用波导和圆形光子晶环谐振器(PCRR)之间的耦合来设计二维光子晶体带通滤波器(2D-PCBPF)。通过调节结构和联接杆的半径的介电常数,研究了输出效率。使用有限差分时域(FDTD)方法研究了圆形PCRR的归一化透射光谱。通过平面波膨胀(PWE)方法计算光子带隙(PBG)。通过该模拟,在波长范围内观察到大约100%的输出效率从1510nm到1520nm。我们进一步调查了影响这些提出的PCBPF的谐振波长和输出效率的参数。考虑本研究的重要参数是反射器中的棒中的杆数,散射杆周围的腔体和腔的尺寸。

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