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Progress on Raman Laser for Sodium Resonance Fluorescence Lidar

机译:拉曼激光钠共振荧光激光雷达的研究进展

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We are developing a Q-switched narrow linewidth intra-cavity Raman laser for a space based sodium lidar application. A novel Raman laser injection seeding scheme is proposed and is experimentally verified. A Q-switched. diode pumped, c-cut Nd:YVO_4 laser has been designed to emit a fundamental wavelength at 1066.6 nm. This fundamental wavelength is used as the pump in an intra-cavity Raman conversion in a Gd_(0.2)Y_(0.8)VO_4 composite material. By tuning the temperature of the crystal, we tuned the Raman shifting to the desired sodium absorption line. A diode end pumped. T-shaped laser cavity has been built for experimental investigation. The fundamental pump laser cavity is a twisted mode cavity to eliminate the spatial hole burning for effective injection seeding. The Raman laser cavity is a linear standing wave cavity because Raman gain medium does not suffer spatial hole burning as traditional laser gain medium. The linewidth and temporal profile of the Raman laser is experimentally investigated with narrow and broadband fundamental pump emission. We have, for the first time, demonstrated an injection seeded, high peak power, narrow linewidth intra-cavity Raman laser for potential use in a sodium resonance fluorescence lidar.
机译:我们正在开发一种基于空间的钠激光雷达应用的Q开关窄线宽腔内拉曼激光器。提出了一种新颖的拉曼激光注入播种方案,并进行了实验验证。 Q开关。二极管泵浦,c切割Nd:YVO_4激光器设计用于发射1066.6 nm的基本波长。该基本波长在Gd_(0.2)Y_(0.8)VO_4复合材料的腔内拉曼转换中用作泵浦。通过调整晶体的温度,我们将拉曼位移调整到所需的钠吸收线。二极管端抽运。 T型激光腔已建立用于实验研究。基本的泵浦激光腔是扭曲模式的腔,可消除空间孔洞燃烧,从而实现有效的注入种子。拉曼激光腔是线性驻波腔,因为拉曼增益介质不像传统的激光增益介质那样遭受空间空穴燃烧。拉曼激光器的线宽和时间分布在窄和宽带基波泵浦发射条件下进行了实验研究。我们首次展示了一种注入种子的高峰值功率,窄线宽腔内拉曼激光器,可用于钠共振荧光激光雷达。

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