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A 110 GHz passive mode-locked fiber laser based on a nonlinear silicon-micro-ring- resonator

机译:基于非线性硅微环谐振器的110 GHz被动锁模光纤激光器

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Mode-locked fiber lasers have many important applications in science and engineering. In this work, we demonstrate for the first time a 110 GHz high repetition rate mode-locked fiber laser using a silicon-based micro-ring resonator (SMRR) to act as an intra-cavity optical comb filter, as well as an optical nonlinear element. No electrical bias for the SMRR is required to reduce free carrier absorption. The SMRR has a free spectral range of 0.88nm, enforcing laser mode-locking at the 110 GHz high rate. The optical nonlinearity of the SMRR also supports the dissipative four-wave mixing effect for generating the mode-locked optical pulse trains. The mode-locked pulse-width, optical 3 dB spectral bandwidth and the time-bandwidth product (TBP) are experimentally measured under different pump currents to the erbium-doped fiber-amplifier module inside the laser cavity. The relative intensity noise and the line-width of the proposed laser are also evaluated. Furthermore, a long-term monitoring is performed. The experimental results show that the optical pulse train generated by the SMRR-based mode-locked fiber laser has a 2.6 ps pulse-width (pump current at 400 mA) at a 110GHz high repetition rate, narrow line-width (1 kHz), high stability (under observation of an hour), and nearly Gaussian transform-limited (TBP is 0.455).
机译:锁模光纤激光器在科学和工程中有许多重要的应用。在这项工作中,我们首次展示了一个110 GHz高重复频率锁模光纤激光器,该激光器使用基于硅的微环谐振器(SMRR)作为腔内光学梳状滤波器以及非线性光学器件。元件。 SMRR不需要电偏置以减少自由载流子吸收。 SMRR具有0.88nm的自由光谱范围,可在110 GHz的高速率下强制进行激光锁模。 SMRR的光学非线性还支持耗散四波混频效应,以产生锁模光脉冲序列。锁模脉冲宽度,3 dB光学光谱带宽和时间带宽乘积(TBP)是在不同泵浦电流下通过实验测量到激光腔内掺-光纤放大器模块的。还评估了所提出的激光器的相对强度噪声和线宽。此外,执行长期监视。实验结果表明,基于SMRR的锁模光纤激光器产生的光脉冲序列在110 GHz高重复频率,窄线宽(1 kHz)时具有2.6 ps的脉冲宽度(400 mA的泵浦电流),高稳定性(在一个小时的观察下),并且接近高斯变换极限(TBP为0.455)。

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