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2-D Photonic crystals microcavity filters based on hexagonal lattice structures embedded in ridge waveguides

机译:基于嵌入脊形波导中的六边形晶格结构的二维光子晶体微腔滤波器

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Compact photonic crystal (PhC) microcavity filters in a ridge waveguide format could play a useful role for wavelength division multiplexing (WDM) and de-multiplexing functionality in dense integrated photonic circuits. The microcavity filters are embedded in ridge waveguides with high lateral refractive-index contrast because good lateral confinement and efficient coupling of light into the device can be achieved using this established waveguide technology. However, this configuration leads to significant modal mismatch at the interfaces between the PhC and waveguide sections, contributing to reflection losses and reduced transmission over much of the useful spectrum. By the same token, mode-matching features consisting of two rows of PhC holes with a different filling factor and displaced to mirror-image positions with respect to the outer two rows of the main PhC mirrors have been implemented to enhance the optical transmission by more than a factor of two. Furthermore, an increase in Q-factor (more than 100 %) is achieved by the addition of two further rows of PhC holes on either side of the microcavity. Moreover, Bragg-grating concepts have been applied in several other filter designs using the same hexagonal PhC lattice configuration, in an attempt to control the filter response. This work involves the design, fabrication (using electron-beam lithography and reactive ion etching) and characterization of such hexagonal-lattice PhC microcavity filters embedded in ridge waveguides.
机译:脊形波导格式的紧凑型光子晶体(PhC)微腔滤波器可为密集集成光子电路中的波分复用(WDM)和解复用功能发挥有用的作用。将微腔滤光片嵌入具有高横向折射率对比度的脊形波导中,因为使用这种成熟的波导技术可以实现良好的横向限制和光到器件的有效耦合。但是,这种配置会导致PhC和波导部分之间的界面处出现明显的模态失配,从而导致反射损耗并降低了许多有用频谱上的透射率。同样,模式匹配特征由两行具有不同填充因子的PhC孔组成,并且相对于主PhC镜的外侧两行位移到镜像位置,从而提高了光透射率。比两倍。此外,通过在微腔体的任一侧添加另外两排PhC孔,可以实现Q因子的提高(超过100%)。此外,布拉格光栅概念已经被应用在使用相同六边形PhC晶格配置的其他几种滤波器设计中,以试图控制滤波器响应。这项工作涉及设计,制造(使用电子束光刻和反应性离子蚀刻)以及表征嵌入在脊形波导中的此类六方晶格PhC微腔滤波器。

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