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Alexandrite: an attractive thin-disk laser material alternative to Yb:YAG?

机译:Alexandrite:一个有吸引力的薄圆盘激光材料替代YB:YAG?

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Yb:YAG thin-disk (TD) technology has enabled construction of laser/amplifier systems with unprecedented average/peak power levels, and has become the workhorse of many scientific investigations. On the other hand, for some applications, the narrow emission bandwidth of Yb:YAG limits its potential, and the search for alternative broadband TD gain media with suitable thermo-optomechanical parameters is ongoing. The alexandrite gain medium has a broad emission spectrum centered around 750 nm, possesses thermomechanical strength that even outperforms Yb:YAG, and has unique spectroscopic properties enabling efficient laser operation even at elevated temperatures. In this work, we have numerically investigated the power scaling potential of continuous-wave (cw) alexandrite lasers in TD geometry for the first time. Using a detailed laser model, we have compared the potential cw laser performance of Yb:YAG, Ti:Sapphire, Cr:LiSAF, Cr:LiCAF, and alexandrite thin-disk lasers under similar conditions and show that among the investigated transition metal-doped gain media, alexandrite is the best alternative to Yb:YAG in power scaling studies at room temperature. Our analysis further demonstrates that potentially Ti:Sapphire is also a good alternative TD material, but only at cryogenic temperatures. However, in comparison with Yb:YAG, the achievable laser gain is relatively low for both alexandrite and Ti:Sapphire, which then requires usage of low-loss cavities with small output coupling for efficient cw operation. (C) 2020 Optical Society of America
机译:YB:YAG薄圆盘(TD)技术使能够构建了激光/放大器系统,具有前所未有的平均/峰值功率水平,并已成为许多科学调查的主力。另一方面,对于某些应用,Yb的窄发射带宽:YAG限制其电位,并且正在寻找具有合适的热致光机参数的替代宽带TD增益介质。亚历山大的增益介质具有约750nm的广泛的发射光谱,具有甚至优于Yb:YAG的热机械强度,并且具有唯一的光谱性能,即使在升高的温度下也能够有效的激光操作。在这项工作中,我们首次在数值上研究了TD几何中连续波(CW)亚历山大激光器的电力缩放电位。使用详细的激光模型,比较了YB:YAG,Ti:蓝宝石,Cr:Lisaf,Cr:LiCAF和亚历山大薄圆盘激光器的潜在CW激光型号进行了比较了相似条件下的潜在CW激光,CR:Lisaf,Cr:LiC-激光器和亚历山大薄盘激光器在调查的过渡金属掺杂中获得媒体,Alexandrite是YB的最佳替代方案:在室温下电力缩放研究中的YAG。我们的分析进一步证明了潜在的Ti:蓝宝石也是一种很好的替代TD材料,但仅在低温温度下。然而,与YB:YAG相比,亚历山大德和Ti的可实现的激光增益相对较低:蓝宝石,随后需要使用具有小输出耦合的低损耗腔以进行高效的CW操作。 (c)2020美国光学学会

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