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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Pulse-timing noise reduction of a mode-locked laser diode by incoherent addition
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Pulse-timing noise reduction of a mode-locked laser diode by incoherent addition

机译:通过非相干加法降低锁模激光二极管的脉冲时序噪声

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This paper describes the operation principle and the experimental results of a new and simple technique to reduce pulse-timing noise of a mode-locked laser diode using fiber-optic interferometers placed outside the laser cavity. When the delay times of the interferometers are set to be much larger than the laser's coherence time and to be integer multiples of the pulse repetition period, incoherent addition of pulse intensities at the output of the interferometer gives rise to the cancellation of pulse-timing noise at specific Fourier frequencies. The technique does not need electrical or optical actions for the laser diode and is realizable only with passive optical components. Experiments are carried out using a 19.444-GHz hybrid mode-locked laser diode. After passing through the combined ring and Mach-Zehnder interferometers the root-mean-square timing jitter is reduced to 0.489 ps (100 kHz-18 MHz) that is 29% of the direct laser output.
机译:本文介绍了一种新的简单技术的工作原理和实验结果,该技术使用放置在激光腔外部的光纤干涉仪来降低锁模激光二极管的脉冲时序噪声。当将干涉仪的延迟时间设置为比激光器的相干时间大得多并且是脉冲重复周期的整数倍时,干涉仪输出处脉冲强度的不相干相加会导致消除脉冲计时噪声在特定的傅立叶频率。该技术不需要激光二极管的电气或光学作用,并且仅通过无源光学组件即可实现。实验是使用19.444 GHz混合锁模激光二极管进行的。通过环形和Mach-Zehnder组合干涉仪后,均方根时序抖动降低到0.489 ps(100 kHz-18 MHz),是直接激光输出的29%。

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