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Multimode laser-diode pumped continuous-wave stoichiometric Yb3Al5O12 laser

机译:多模激光二极管泵浦连续波化学计量Yb3Al5O12激光器

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In recent years, ytterbium-ion (Yb)-doped materials have been recognized having attractive potential for laserdiode (LD) pumped solid state lasers. One of the features of the Yb-doped materials is that it can incorporate very high concentrations of the Yb-ions with low concentration quenching. Highly laser ion-doped materials with short absorption length permit the use of thin gain media with high pump absorption efficiency. The thin media are useful for high efficiency oscillation by high intensity pumping, i.e., LDs with low beam quality can be used as pump sources with high mode-matching efficiency between the laser beam and the pump beam. For example at room temperature, the highest efficiencies, which close to the laser quantum limit of 91% and are the highest in the lasers to our knowledge, are obtained by continuous-wave (CW) microchip Yb:YAG lasers with a high ion concentration of 20 at.% by high intensity pumping [1]. Although the pump source was a Ti:sapphire laser, these results suggest that these efficiencies can be also obtained from LD pumped CW lasers with higher Yb-ion concentration materials, such as the stoichiometric Yb-doped materials, in which Yb-ion concentration is the highest in the Yb-doped materials.
机译:近年来,已经认识到掺laser离子(Yb)的材料对于激光二极管(LD)泵浦固态激光器具有诱人的潜力。掺Yb的材料的特征之一是,它可以掺入非常高浓度的Yb离子,并且具有低浓度的淬灭作用。具有短吸收长度的高度激光离子掺杂的材料允许使用具有高泵浦吸收效率的薄增益介质。薄介质对于通过高强度泵浦产生的高效率振荡是有用的,即,具有低光束质量的LD可以用作在激光束和泵浦光束之间具有高模式匹配效率的泵浦光源。例如,在室温下,通过具有高离子浓度的连续波(CW)微芯片Yb:YAG激光器可以获得最高效率,该效率接近91%的激光量子极限,并且在我们所知的激光器中是最高的。通过高强度泵抽[20]%[1]。尽管泵浦源是Ti:蓝宝石激光器,但这些结果表明,也可以从具有较高Yb离子浓度的材料(例如化学计量掺Yb的材料)中掺入Yb离子浓度较高的LD泵浦连续波激光器获得这些效率。在掺Yb的材料中最高。

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