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Liquid Crystal WDM filter in Si photonic crystal technology with individual channel fine-tuning capability

机译:采用硅光子晶体技术的液晶WDM滤波器,具有单通道微调功能

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摘要

We demonstrate a simple, low-cost solution for a single multi-channel WDM (Wavelength Division Multiplexing) filter with fine–tuning capability of individual channels. The filter is based on Si photonic crystal technology and can be integrated with CMOS processes. Although, fabrication technologies of Si integrated WDM systems have significantly advanced over the last decade, the most difficult challenges are posed by wavelength accuracy control as well as wavelength drifts and optical switching time. The proposed novel design of a multichannel integrated filter is based on the 1D silicon photonic crystal (PhC) model. By infiltration of the certain grooves of 1D PhC with matching filler, an efficient coupled Fabry-Pérot microresonator can be realized in which the wide-band stop band (SB) is used for frequency channel separation. By using the commercial nematic liquid crystal 5CB [1], we demonstrated electro-optical switching in the range of 30-50 nanoseconds and the continuous tuning of the individual channels up to 30 % of the channel-spacing. The fabricated multichannel filters have bandwidth of 0.1-0.9 nm with high extinction ration of 20dB at high modulation of reflection/ transmission coefficient. Using the gap map approach as a core engineering tool allows to predict formation and separation of transmission channels within the SBs and, thus, effectively determine the exact design parameters of the optical device. The obtained experimental spectral characteristics in the NIR range around 1.31 and 1.55 μm validated the proposed method and its applicability for the wavelength selective switching (WSS) as well as for the WDM in Si chip optical interconnects. [1] M. W. Geis, T. M. Lyszczarz, R. M. Osgood, and B. R. Kimball, " 30 to 50 ns liquid-crystal optical switches", Opt. Express 18, 18886-18893 (2010)
机译:我们为单个多通道WDM(波分复用)​​滤波器演示了一种简单,低成本的解决方案,并具有对单个通道的微调功能。该滤波器基于Si光子晶体技术,可以与CMOS工艺集成。尽管在过去十年中,Si集成WDM系统的制造技术已取得了显着进步,但最困难的挑战是波长精度控制以及波长漂移和光切换时间。提出的新颖的多通道集成滤波器设计基于1D硅光子晶体(PhC)模型。通过使用匹配的填料渗透到一维PhC的某些凹槽中,可以实现高效耦合的Fabry-Pérot微谐振器,其中宽带阻带(SB)用于频道分离。通过使用商用向列液晶5CB [1],我们展示了在30-50纳秒范围内的电光切换以及对单个通道的连续调谐,最多可达到通道间隔的30%。所制造的多通道滤波器在反射/透射系数的高调制下具有0.1-0.9 nm的带宽和20dB的高消光比。使用间隙图方法作为核心工程工具可以预测SB中传输通道的形成和分离,从而有效地确定光学设备的确切设计参数。在1.31和1.55μm的NIR范围内获得的实验光谱特性验证了该方法及其在波长选择转换(WSS)以及Si芯片光学互连中的WDM中的适用性。 [1] M. W. Geis,T。M. Lyszczarz,R。M. Osgood和B. R. Kimball,“ 30到50 ns液晶光学开关”,选项。快递18,18886-18893(2010)

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