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Fourier Pulse Shaper for High Power Fiber Coupled Lasers and Supercontinuum Sources

机译:高功率纤维耦合激光器和超强素源的傅里叶脉冲整形

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Femtosecond pulse shaping, a widely used technology, enables the generation of light sources with arbitrary amplitude,phase and polarization in the ultrafast regime. This technology has seen applications in fiber and nonlinear optics, OCT,confocal microscopy, bandpass filtering etc. However, these shapers work primarily at low optical powers under the100mW level, limited by in and out coupling optics, shaper configurations and optical design of the shaper. Recently,another exciting field of research has been high power fiber laser sources. Various high power fiber sources based on avariety of nonlinear phenomena such as high power supercontinuum sources, Raman lasers etc have been demonstrated.However, owing to 10s of W class optical powers involved, Fourier shaping in this field has not been utilized effectivelythereby limiting many potential applications. Here, we demonstrate a scalable design for a high power Fourier shaper in4-f configuration capable of handling 20 W of CW lasers with a working bandwidth of over 450nm between 1-1.5micron connecting the two very important Yb and Er emission windows. Our design implements a transmissivegeometry thereby isolating input and output beams which is otherwise provided by fiber coupled circulators, acomponent unavailable at high power levels for a broadband source. Cladding mode stripping is effectively implementedto heat-sink the uncoupled laser light to ensure high power operations feasible. The design also takes accounts ofmodifications in fiber coupled collimators and amplitude masks to conform with the demands of high power fiber lasertechnology.
机译:飞秒脉冲整形,一种广泛使用的技术,使得能够产生具有任意幅度的光源,超快状态下的相位和极化。这项技术在纤维和非线性光学器件中看到了应用,OCT,同学显微镜,带通滤波等,这些成形器主要在低光功率下工作100MW电平,受到耦合光学,整形设计和整形光学设计的限制。最近,另一个令人兴奋的研究领域一直是高功率光纤激光源。基于A的各种高功率光纤源已经证明了各种非线性现象,如高功率超连续,拉曼激光器等。然而,由于涉及的W类光功率10多,该领域中的傅里叶整形尚未有效地利用从而限制了许多潜在的应用。在这里,我们展示了一种用于高功率傅里叶的整形器的可扩展设计4-F配置能够处理20W的CW激光器,工作带宽为1-1.5之间的工作带宽超过450nmMicron连接两个非常重要的YB和ER发射窗。我们的设计实现了一种透射由此,几何图中,隔离输入和输出光束,否则由光纤耦合循环器提供,a组件在宽带源的高功率水平下不可用。熔覆模式剥离有效实施散热解耦激光以确保可行的高功率操作。该设计还考虑了光纤耦合准直器和幅度掩模的修改,以符合大功率光纤激光的需求技术。

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