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首页> 外文期刊>Optics Letters >Birefringence compensated silicon nanowire arrayed waveguide grating for CWDM optical interconnects
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Birefringence compensated silicon nanowire arrayed waveguide grating for CWDM optical interconnects

机译:用于CWDM光学互连的双折射补偿硅纳米线阵列波导光栅

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We demonstrate an arrayed waveguide grating based on silicon nanowires with birefringence compensation for optical interconnects using coarse wavelength division multiplexing (CWDM). Angled star couplers are employed in combination with different diffraction orders for TM and TE polarizations. This device has a compact footprint of 0.36 mm × 0.17 mm. Theoretical and experimental results show that the polarization-dependent wavelength shifts (PDλ) can be reduced from 380-420 to 0.5-3.5 nm, below 25% of the 3 dB bandwidth of channel response. The measured cross talk for TM polarization is better than -18 dB, and that for TE is better than -14 dB.
机译:我们演示了基于硅纳米线的阵列波导光栅,该光栅具有双折射补偿,用于使用粗波分复用(CWDM)的光学互连。成角度的星形耦合器与TM和TE偏振的不同衍射级结合使用。该设备的占地面积仅为0.36 mm×0.17 mm。理论和实验结果表明,偏振相关的波长偏移(PDλ)可以从380-420 nm减小到0.5-3.5 nm,低于通道响应的3 dB带宽的25%。 TM极化的测得的串扰优于-18 dB,TE的测得的串扰优于-14 dB。

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