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Triangular-Shaped Coupled Microrings for Robust Wavelength Multi-/Demultiplexing in Si Photonics

机译:三角形耦合微环,用于硅光子学中的稳健波长多/解复用

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摘要

We propose and demonstrate triangular-shaped coupled Si microrings for robust wavelength multi-/demultiplexing. Thanks to the geometry, stable interring couplings are obtained at straight waveguides, and heaters for thermal tuning can be isolated maximally with each other so that the thermal crosstalk is suppressed between rings. To suppress the bend loss and enhance the free spectral range (FSR), 2-μm-radius low-loss sharp bends with an optimum waveguide offset are employed. A CMOS-compatible process is used for fabricating second- and fourth-order coupled-microrings designed for the Butterworth and Chebyshev spectral responses, respectively. In the second-order rings, flat-top Box-like drop spectra with fluctuations < ±0.1 dB, insertion loss of 1.2 dB, out-of-band suppression >30 dB, bandwidth of 2.2 nm, FSR of 19 nm, and thermal tuning up to 8 nm are obtained experimentally. The efficiency of the thermal tuning is better and the thermal crosstalk is lower than those in conventional circular and race-track rings for such wide FSR.
机译:我们提出并演示了用于稳健的波长多路/多路分解的三角形耦合硅微环。由于其几何形状,可以在直波导中获得稳定的环间耦合,并且可以最大程度地隔离用于热调谐的加热器,从而抑制了环之间的热串扰。为了抑制弯曲损耗并增强自由光谱范围(FSR),采用了具有最佳波导偏移的2μm半径低损耗尖锐弯曲。 CMOS兼容工艺用于制造分别针对Butterworth和Chebyshev光谱响应设计的二阶和四阶耦合微环。在二阶环中,波动小于±0.1 dB,插入损耗为1.2 dB,带外抑制> 30 dB,带宽为2.2 nm,FSR为19 nm和热的平顶Box型液滴光谱通过实验获得的最大调谐波长为8 nm。对于如此宽的FSR,与传统的环形和跑道形环相比,热调谐的效率更高,热串扰也更低。

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