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Internally-frequency-doubled Yb fiber laser with 15W CW green output

机译:内部倍频Yb光纤激光器,具有15W CW绿色输出

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摘要

In this paper we present a high power continuous-wave (CW) green source using a novel approach for frequency doubling of high power CW fiber lasers based on an internal resonant enhancement cavity integrated within the fiber laser resonator. The experimental configuration (shown in Fig. 1) comprised a double-clad fiber with an Yb-doped core in a simple standing-wave resonator. Feedback for lasing was provided by a diffraction grating at one end of the fiber, and by an external cavity containing a resonant enhancement cavity at the opposite end of the fiber. The enhancement cavity comprised a Brewster-angled LiB3O5 (LBO) crystal placed in an oven and cut for type I non-critical phase-matching. In this scheme, the fiber laser automatically lases on axial modes that are resonant in the enhancement cavity avoiding the need for active stabilisation. The fundamental laser power is enhanced in the resonant cavity by virtue of its relatively low loss yielding high second harmonic conversion efficiency.
机译:在本文中,我们提出了一种高功率连续波(CW)绿色光源,它使用一种基于集成在光纤激光谐振器内的内部谐振增强腔的新型方法对高功率CW光纤激光器进行倍频。实验配置(如图1所示)在一个简单的驻波谐振器中包括一个带有Yb掺杂纤芯的双包层光纤。通过在光纤的一端处的衍射光栅以及在光纤的另一端处包含谐振增强腔的外部腔来提供用于激射的反馈。增强腔包含放置在烤箱中的布鲁斯特角LiB3O5(LBO)晶体,并切割成I型非关键相匹配。在此方案中,光纤激光器自动在增强型腔中共振的轴向模式上激射,从而避免了主动稳定的需要。谐振腔中的基本激光功率由于其相对较低的损耗而得以提高,从而产生了较高的二次谐波转换效率。

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