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Second order add/drop filter with a single ring resonator

机译:具有单环形谐振器的二阶分插滤波器

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We show theoretically and experimentally how a flat-top second-order response can be achieved with a self-coupled single add-drop ring resonator based on two couplers with different splitting ratios. The resulting device is a 1×1 filter, reflecting light back in the input waveguide at resonating wavelengths in the passbands, and transmitting light in the output waveguide at all other non-resonating wavelengths. Different implementations of the filter have been designed and fabricated on a micron-scale silicon photonics platform. They are based on compact Euler bends - either U-bends or L-bends - and Multi-Mode Interferometers as splitters for the ring resonators. Different finesse values have been achieved by using either 50:50 MMIs in conjunction with 85:15 MMIs or 85:15 MMIs in conjunction with 95:05 double MMIs. Unlike ordinary lowest order directional couplers, the MMIs couple most of the power in the cross-port which make them particularly suitable for the topology of the self-coupled ring, which would otherwise require a waveguide crossing. Experimental results are presented, showing good agreement with simulations. The proposed devices can find applications as wavelength-selective reflectors for relatively broad-band lasers or used as 2×2 add-drop filters when two exact replicas of the device are placed on the arms of a Mach-Zehnder interferometer.
机译:我们在理论上和实验上展示了如何使用基于具有不同分光比的两个耦合器的自耦合单分插环谐振器实现平顶二阶响应。最终的设备是1×1滤波器,它以通带中的谐振波长将光反射回输入波导中,并以所有其他非谐振波长的光透射出输出波导中。已经在微米级硅光子平台上设计和制造了滤波器的不同实现。它们基于紧凑的Euler弯曲-U形弯或L形弯-以及多模干涉仪作为环形谐振器的分离器。通过将50:50 MMI与85:15 MMI结合使用或将85:15 MMI与95:05双MMI结合使用,可以实现不同的精细度值。与普通的最低阶定向耦合器不同,MMI在交叉端口中耦合大多数功率,这使其特别适合自耦合环的拓扑,否则将需要波导交叉。实验结果表明,与仿真结果吻合良好。当该设备的两个精确复制品放置在Mach-Zehnder干涉仪的臂上时,提出的设备可以用作相对宽带激光器的波长选择反射器,或用作2×2分插滤波器。

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