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Generation and characterization of burst modes in passively mode-locked lasers with internal Fabry-Perot cavities

机译:内部法布里 - 珀罗空腔的被动模式锁定激光器中的突发模式的产生与表征

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摘要

The generation of burst pulses in a multi-pass passively mode-locked laser is systematically explored. We exploit intracavity mirrors with different thicknesses to serve as reflected Fabry-Perot (RFP) cavities in laser resonators. Using a RFP cavity with the thinnest optical thickness, we can generate picosecond optical burst pulses with the highest intra-burst pulse rate of 33.12 GHz. The maximum output power of 2.6 W is obtained at an incident pump power of 11.9 W. We further develop an analytical model which considers the RFP effects to manifest the first-order autocorrelation and spectral behaviors in experiments. The agreement between theoretical analyses and experimental explorations provides the feasibility to flexibly manipulate the burst modes in practical applications. (C) 2019 Optical Society of America
机译:系统探索多通被隔板激光器中的突发脉冲的产生。 我们利用具有不同厚度的腔内镜子以激光谐振器中的反射法布里 - 珀罗(RFP)空腔。 使用具有最薄光学厚度的RFP腔,我们可以产生具有33.12 GHz的最高突发脉冲速率的PICOSECOND光学突发脉冲。 2.6 W的最大输出功率在11.9W的入射泵功率下获得。我们进一步开发了一个分析模型,考虑了RFP效应,表明实验中的一阶自相关和光谱行为。 理论分析与实验探索之间的协议提供了灵活操纵实际应用中突发模式的可行性。 (c)2019年光学学会

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