首页> 外文会议>Conference on Lasers and Electro-Optics >Radiative lifetimes and fractional thermal loading of Yb{sub}3Al{sub}5O{sub}12(YbAG) and highly-doped Yb:Y{sub}3Al{SUB}5O{SUB}12(Yb:YAG)
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Radiative lifetimes and fractional thermal loading of Yb{sub}3Al{sub}5O{sub}12(YbAG) and highly-doped Yb:Y{sub}3Al{SUB}5O{SUB}12(Yb:YAG)

机译:Yb {sub} 3Al {sub} 5o {sub} 12(ybag)和高度掺杂的Yb:y {sub} 3al {sub} 50 {sub} 12(yb:yb} 12(YB:YAG)的辐射寿命和分数热负荷

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Combined with appropriate laser designs such as the thin disk and waveguide architectures, highly-doped solid-state laser materials offer the potential for higher average power scaling and improved thermal management. Because stress fracture is limited by thermal gradient, the ability to keep the gain element thin while still having sufficient rare earth ion density to absorb the pump light can allow higher pump intensities and efficiencies. To date impurities in the crystals have limited the usefulness of high concentration Yb:YAG. At higher Yb{sup}(3+) concentrations, energy migration makes the fluorescence lifetime and fractional heat loading particularly sensitive to defects. The work described here addresses some of the questions that have been raised regarding the maximum useful Yb{sup}(3+) concentration in YAG. We have systematically measured the fractional heat loading, radiative lifetimes and other material properties of (Yb{sub}xY{sub}(1-x)){sub}3Al{sub}5O{sub}12 for x = 0.05, 0.1, 0.15, 0.18, 0.25, 0.5, 1.
机译:结合适当的激光设计,如薄盘和波导架构,高掺杂的固态激光材料提供更高平均功率缩放和改善的热管理的可能性。因为应力裂缝受热梯度的限制,所以保持增益元件薄的能力同时仍然具有足够的稀土离子密度以吸收泵浦光可以允许更高的泵强度和效率。迄今为止晶体中的杂质限制了高浓度Yb:YAG的有用性。在较高的Yb {sup}(3+)浓度下,能量迁移使荧光寿命和分数热负荷对缺陷特别敏感。这里描述的工作涉及已经提出的一些问题,这些问题是关于YAG中最大有用的YB {sup}(3+)浓度的效果。我们系统地测量了(YB {sub} {sub}(1-x)){sub} 3的分数热负荷,辐射寿命和其他材料特性(1-x)3} 12,x = 0.05,0.1, 0.15,0.18,0.25,0.5,1。

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