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DEVELOPMENT OF THE VARIABLE PULSEWIDTH MODE-LOCKED FEMTOSECOND LASER USING COHERENT COUPLING

机译:相干耦合技术开发脉宽调制锁模飞秒激光

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Laser processing field demand high energy pulses, thus widening pulsewidth is necessary for femtosecond pulses [1,2]. We have developed a novel method variable pulsewidth laser, which is different from conventional systems with optical BPF (Band-Pass Filter). Our pulsewidth tuning system applies a coherent coupling. When two laser-beams are coupled, output-longitudinal-modes are emitted by corresponding longitudinal modes of respective laser modules. In this study, one longitudinal-mode-space is changed arbitrary by tuning cavity length to control the output-longitudinal-modes. As the result, an envelope of the longitudinal modes, i.e. spectrum bandwidth is controlled to tune the pulsewidth. In experiment, the laser modules of our system generate about 150 fs pulsewidth and around 30 nm spectrum bandwidth respectively. The result of the coupling, the pulsewidth is tuned with cavity length. The cavity length difference is controlled to 1.5 mm between the laser modules, and we have succeeded in widening the pulse to 1.2 ps at maximum.
机译:激光加工领域需要高能量的脉冲,因此飞秒脉冲需要扩大脉冲宽度[1,2]。我们已经开发了一种新颖的可变脉冲宽度激光器,它不同于带光学BPF(带通滤波器)的常规系统。我们的脉宽调谐系统采用相干耦合。当两个激光束耦合时,通过各个激光模块的相应纵向模式发射输出-纵向模式。在这项研究中,通过调整腔体长度以控制输出-纵向模式,可以任意改变一个纵向模式空间。结果,纵向模式的包络即频谱带宽被控制以调谐脉冲宽度。在实验中,我们系统的激光模块分别产生约150 fs的脉冲宽度和约30 nm的光谱带宽。耦合的结果是,脉宽随腔长而调整。激光模块之间的腔长度差被控制为1.5 mm,我们已经成功地将脉冲扩展到最大1.2 ps。

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