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High-Q in-plane channel drop filter based on two-dimensional photonic crystals for dense wavelength division multiplexing

机译:基于二维光子晶体的密度波分复用的二维光子晶体的高Q内沟道掉滤波器

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We proposed a high-Q in-plane channel drop filter using photonic crystal (PhC) cavities that are defined by an effective Aubry-Andre-Harper (AAH) bichromatic potential. The channel drop filter consists of AAH cavities and line-defect waveguides. Three-port structure with a wavelength-selective reflection cavity is applied. The parameters of the channel drop filter is analyzed by two-dimensional (2D) finite-difference-time-domain (FDTD) method. The simulation results are namely, the center wavelength of the filter being 1573.0 nm, and the insertion loss being smaller than 0.6 dB. The 3 dB bandwidth is 0.2 nm, and the loaded Q is up to 8×10~3. So the proposed device can be applied in a dense wavelength division multiplexing (DWDM) system with a 100 GHz channel spacing. Besides, the channel drop filter has a broad free spectral range (FSR) of around 250 nm, covering from 1350 nm to 1600 nm. The footprint of the channel drop filter unit is only 10 μm×20 urn.
机译:我们提出了使用由有效Aubry-Andre-Harper(AAH)双族电位限定的光子晶体(PHC)空腔的高Q内沟道掉滤波器。通道掉线过滤器由AAH腔和线缺陷波导组成。应用具有波长选择反射腔的三端口结构。通过二维(2D)有限差分 - 时域(FDTD)方法分析信道丢失滤波器的参数。仿真结果是,过滤器的中心波长为1573.0nm,并且插入损耗小于0.6dB。 3 dB带宽为0.2nm,负载Q可达8×10〜3。因此,所提出的设备可以应用于具有100GHz通道间距的密集波分复用(DWDM)系统中。此外,通道槽滤波器具有约250nm的宽自由光谱范围(FSR),覆盖1350nm至1600nm。频道丢失过滤器单元的占地面积仅为10μm×20瓮。

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