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Investigation of AWG demultiplexer based SOI for CWDM application

机译:基于AWG解复用器的CWDM应用研究

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9-channel Arrayed Waveguide Grating (AWG) demultiplexer for conventional and tapered structure were simulated using beam propagation method (BPM) with channel spacing of 20 nm. The AWG demultiplexer was design using high refractive index (n~3.47) material namely silicon-on-insulator (SOI) with rib waveguide structure. The characteristics of insertion loss, adjacent crosstalk and output spectrum response at central wavelength of 1.55 μm for both designs were compared and analyzed. The conventional AWG produced a minimum insertion loss of 6.64 dB whereas the tapered AWG design reduced the insertion loss by 2.66 dB. The lowest adjacent crosstalk value of -16.96 dB was obtained in the conventional AWG design and this was much smaller compared to the tapered AWG design where the lowest crosstalk value is -17.23 dB. Hence, a tapered AWG design significantly reduces the insertion loss but has a slightly higher adjacent crosstalk compared to the conventional AWG design. On the other hand, the output spectrum responses that are obtained from both designs were close to the Coarse Wavelength Division Multiplexing (CWDM) wavelength grid.
机译:使用具有20nm的通道间距的光束传播方法(BPM)模拟用于常规和锥形结构的9通道阵列波导光栅(AWG)多路分解器。 AWG解复用器是使用高折射率(N〜3.47)材料的设计,即具有肋波导结构的绝缘体上的绝缘体(SOI)。比较和分析了两种设计的插入损耗,相邻串扰和输出光谱响应1.55μm的特性。传统的AWG产生了6.64dB的最小插入损耗,而锥形AWG设计将插入损耗降低2.66 dB。在传统的AWG设计中获得-16.96dB的最低相邻串扰值,与锥形AWG设计相比,这比最低串扰值为-17.23 dB的设计得多。因此,与传统的AWG设计相比,锥形AWG设计显着降低了插入损耗,而是具有稍高的相邻串扰。另一方面,从两个设计获得的输出频谱响应靠近粗波分复用(CWDM)波长网格。

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