首页> 外文会议>Conference on High-Power Laser Ablation V pt.1; 20040425-20040430; Taos,NM; US >New class of cw high-power diode-bumped alkali lasers (DPALs)
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New class of cw high-power diode-bumped alkali lasers (DPALs)

机译:新型连续波大功率二极管泵浦碱金属激光器(DPAL)

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The new class of diode-pumped alkali vapor lasers (DPALs) offers high efficiency cw laser radiation at near-infrared wavelengths: cesium 895 nm, rubidium 795 nm, and potassium 770 nm. The working physical principles of DPALs will be presented. Initial 795 nm Rb and 895 nm Cs laser experiments performed using a titanium sapphire laser as a surrogate pump source demonstrated DPAL slope power conversion efficiencies in the 50-70% range, in excellent agreement with device models utilizing only literature spectroscopic and kinetic data. Using these benchmarked models for Rb and Cs, optimized DPALs with optical-optical efficiencies >60%, and electrical efficiencies of 25-30% are projected. DPAL device architectures for near-diffraction-limited power scaling into the high kilowatt power regime from a single aperture will be described. DPAL wavelengths of operation offer ideal matches to silicon and gallium arsenide based photovoltaic power conversion cells for efficient power beaming.
机译:新型的二极管泵浦碱蒸汽激光器(DPAL)在近红外波长处提供高效的连续波激光辐射:铯895 nm,rub 795 nm和钾770 nm。将介绍DPAL的工作物理原理。使用钛蓝宝石激光器作为替代泵浦光源进行的最初795 nm Rb和895 nm Cs激光实验表明,DPAL斜率功率转换效率在50-70%的范围内,与仅使用文献光谱和动力学数据的器件模型非常吻合。使用Rb和Cs的这些基准模型,预计光效率> 60%,电效率为25-30%的优化DPAL。将描述用于将近衍射极限功率从单个孔径缩放到高千瓦功率状态的DPAL器件架构。 DPAL的工作波长可与基于硅和砷化镓的光伏功率转换电池实现理想匹配,从而实现高效的功率传输。

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