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Reviews of a Diode-Pumped Alkali Laser (DPAL), a Potential High-powered Light Source

机译:二极管泵浦碱性激光(DPAL)的评论,一种潜在的高功率光源

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Diode pumped alkali vapor lasers (DPALs) were first developed by in W. F. Krupke at the beginning of the 21th century. In the recent years, DPALs have been rapidly developed because of their high Stokes efficiency, good beam quality, compact size and near-infrared emission wavelengths. The Stokes efficiency of a DPAL can achieve a miraculous level as high as 95.3% for cesium (Cs), 98.1% for rubidium (Rb), and 99.6% for potassium (K), respectively. The thermal effect of a DPAL is theoretically smaller than that of a normal diode-pumped solid-state laser (DPSSL). Additionally, generated heat of a DPAL can be removed by circulating the gases inside a sealed system. Therefore, the thermal management would be relatively simple for realization of a high-powered DPAL. In the meantime, DPALs combine the advantages of both DPSSLs and normal gas lasers but evade the disadvantages of them. Generally, the collisionally broadened cross sections of both the D_1 and the D_2 lines for a DPAL are much larger than those for the most conventional solid-state, fiber and gas lasers. Thus, DPALs provide an outstanding potentiality for realization of high-powered laser systems. It has been shown that a DPAL is now becoming one of the most promising candidates for simultaneously achieving good beam quality and high output power. With a lot of marvelous merits, a DPAL becomes one of the most hopeful high-powered laser sources of next generation.
机译:二极管泵浦碱蒸汽激光器(DPAL)最早是由W. F. Krupke在21世纪初开发的。近年来,DPAL由于其高的斯托克斯效率,良好的光束质量,紧凑的尺寸和近红外发射波长而得到了迅速的发展。 DPAL的斯托克斯效率可奇迹般地达到铯(Cs)的95.3%,R(Rb)的98.1%和钾(K)的99.6%的高水平。理论上,DPAL的热效应比普通的二极管泵浦固态激光器(DPSSL)的热效应小。另外,可以通过使气体在密封系统内循环来消除DPAL产生的热量。因此,热管理对于实现高功率DPAL而言将相对简单。同时,DPAL结合了DPSSL和普通气体激光器的优点,却回避了它们的缺点。通常,DPAL的D_1和D_2线的碰撞加宽截面要比最传统的固态,光纤和气体激光器大得多。因此,DPAL为实现高功率激光系统提供了巨大的潜力。已经显示出,DPAL现在正成为同时实现良好的光束质量和高输出功率的最有前途的候选者之一。具有许多出色的优点,DPAL成为下一代最有希望的高功率激光源之一。

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