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Monolithic integration of tunable V-coupled-cavity laser and Mach-Zehnder modulator on generic InP platform

机译:通用INP平台上可调谐V耦合腔激光器和Mach-Zehnder调制器的单片集成

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The monolithic integration of a tunable V-coupled-cavity laser based on half-wave multimode interference reflector(MIR-VCL) with a travelling-wave Mach-Zehnder modulator (TW-MZM) on generic InP foundry platform is present inthis paper. The formation mechanism of pi-coupling-phase difference and the contradiction among loss, optimal couplingphase difference and optimal coupling coefficients of half-wave coupler are analyzed. Single electrode tuning of 11channels of about 7.3nm wavelength range is obtained, which is determined by the cavity length and the 10% cavitylength difference. Among the whole wavelength tuning range, the side mode suppression ratios (SMSRs) are all above35dB and the typical one is about 42dB. The Mach-Zehnder modulator with optimized travelling wave electrode isintegrated with the MIR-VCL by two two-ports MIRs, which could provide optical feedback for laser and CW light forMZM in the meantime. The monolithic integrated transmitter on generic InP platform is free of complicated fabricationprocess of grating structure and has good potential for cost effective applications.
机译:基于半波多变频反射器的可调谐V耦合腔激光的单片集成(MIR-VCL)与通用INP铸造平台上的旅行波Mach-Zehnder调制器(TW-MZM)出现在这张纸。 Pi耦合相位差的形成机制和损失之间的矛盾,最佳耦合分析了半波耦合器的相位差和最佳耦合系数。单电极调谐11获得约7.3nm波长范围的通道,由腔长和10%腔决定长度差异。在整个波长调谐范围中,侧面模式抑制比(SMSRS)全部35dB和典型的一个是42dB。具有优化行波电极的Mach-Zehnder调制器是通过两个双端口MIR与MIR-VCL集成,可以为激光和CW光提供光学反馈与此同时的mzm。通用INP平台上的单片集成发射器无复杂的制作光栅结构的过程,具有良好的具有成本效益应用的潜力。

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