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首页> 外文期刊>Results in Physics >TE-like mode analysis of microsystem InGaAsP/InP semiconductor resonator generating 20?GHz repetition rate pulse trains
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TE-like mode analysis of microsystem InGaAsP/InP semiconductor resonator generating 20?GHz repetition rate pulse trains

机译:微系统InGaAsP / InP半导体谐振器产生20?GHz重复频率脉冲序列的类TE模式分析

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In microsystem technologies, the microring resonators (MRRs) can be used as a filter device. A wavelength-selective modified add-drop MRR filter is used for adding and dropping a particular wavelength in order to control the light propagation within the system. The spectrum of the mode-locked laser could be generated using a fiber laser loop consisting of active gain medium, EDF, Lumics 980?nm laser diode (LD), wavelength division multiplexer (WDM), isolator, a polarization controller (PC) and carbon nanotube (CNT). The multi-mode-locked laser could be generated at the through and drop port of the system after the mode-locked pulse from the fiber laser circulate within the MRR filter. Here, the mode-locking relies on a fiber laser setup, where the MRR filter has been modeled using the Fimmwave and PICWave softwares. We present this photonic circuits simulator based on the time-domain traveling wave (TDTW) method, provides modeling both active and passive photonic circuits. The pulse bandwidth and repetition of the train mode-locked pulses generated by the fiber laser setup are 0.65?ps and 30?MHz respectively. Using the MRR filter, the drop port output pulses show the FSR and FWHM of 172?pm (20?GHz) and 8.3?pm respectively. The finesse and the Q-factor are approximately 20.72 and 1.9?×?105respectively.
机译:在微系统技术中,微环谐振器(MRR)可用作滤波器。为了控制系统内的光传播,使用了波长选择性修改型分插MRR滤波器来增加和减少特定的波长。锁模激光器的光谱可以使用由有源增益介质,EDF,Lumics 980?nm激光二极管(LD),波分复用器(WDM),隔离器,偏振控制器(PC)和碳纳米管(CNT)。在来自光纤激光器的锁模脉冲在MRR滤波器内循环之后,可以在系统的通过和下降端口处生成多锁模激光器。这里,锁模依赖于光纤激光器设置,其中MRR滤波器是使用Fimmwave和PICWave软件建模的。我们提出了一种基于时域行波(TDTW)方法的光子电路模拟器,提供了有源和无源光子电路的建模。光纤激光器产生的脉冲带宽和火车锁模脉冲的重复频率分别为0.65?ps和30?MHz。使用MRR滤波器,引入端口输出脉冲的FSR和FWHM分别为172?pm(20?GHz)和8.3?pm。精细度和Q因子分别约为20.72和1.9Ω×Ω105。

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