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Fabrication of 17 × 17 polymer/Si arrayed waveguide grating with flat spectral response using steam-redissolution technique

机译:用蒸汽晶体矫正技术制备17×17聚合物/ Si阵列波导光栅,具有平坦光谱响应

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摘要

Arrayed waveguide grating (AWG) is a key device in the wavelength-division multiplexing (WDM) system, and the flat spectral response of the AWG device is required. In this paper, the RIE process has been improved. By using the steam-redissolution technique, the insertion loss and the crosstalk have been reduced. Experimental results show that the central wavelength is 1550.86 nm, the channel spectral response flatness is about 1.5 dB, 3-dB bandwidth is about 0.478 nm, insertion loss is 10.5 dB, and crosstalk is about -22 dB. The insertion loss of an AWG device is reduced by about 3 dB for the central channel and 4.5 dB for the edge channels, and the crosstalk is reduced by 2.5 dB after the steam- redissolution.
机译:阵列波导光栅(AWG)是波分复用(WDM)系统中的关键装置,并且需要AWG设备的平坦频谱响应。 在本文中,RIE过程得到了改善。 通过使用蒸汽结变技术,缩短插入损耗和串扰已经降低。 实验结果表明,中心波长为1550.86nm,通道光谱响应平坦度为约1.5dB,3-dB带宽约为0.478nm,插入损耗为10.5 dB,串扰约为-22 dB。 对于中央通道,AWG器件的插入损耗减小了约3dB,对于边缘通道,4.5dB,串联蒸汽在蒸汽后减少2.5 dB。

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