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Processes of heat generation in Nd~(+3) doped materials during pump-lase cycle

机译:Nd〜(+3)掺杂材料在泵浦激光循环过程中的发热过程

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A study of the various channels of energy transfer from the upper lasing level of Nd:YVO_4 following direct pumping at 880nm is presented. The dependency of the heat that was generated in the laser crystals as a function of doping concentrations and different pumping and lasing conditions was measured along with the laser performance. In the absence of a laser resonator, the heat to pump power relation behaved linearly and was strongly dependent upon the Nd~(+3) doping concentration. During lasing at 1064nm, the heat to pump ratio dropped dramatically but still did increase linearly with growing concentrations. The heat to pump dependency upon different output couplers with the same laser crystal was ~linear too and increased with increasing intra-cavity power density. These experimental results suggest that different mechanisms govern the heat creation before and after laser threshold. Cross relaxation on top of the Stokes shift seems to govern heat creation before threshold, while excited state absorption and crystal impurities may be the mechanisms that govern the excess heat creation above threshold.
机译:提出了在880nm直接泵浦后从Nd:YVO_4的高激光能级传输能量的各种通道的研究。测量了激光晶体中产生的热量与掺杂浓度以及不同的泵浦和激光条件的关系,以及激光性能。在没有激光谐振器的情况下,热量与泵浦功率的关系呈线性关系,并且强烈依赖于Nd〜(+3)掺杂浓度。在1064nm的激光发射过程中,热泵比急剧下降,但仍随着浓度的增加而线性增加。对于具有相同激光晶体的不同输出耦合器,泵浦的热量依赖性也是线性的,并且随着腔内功率密度的增加而增加。这些实验结果表明,不同的机制控制着激光阈值前后的热量产生。斯托克斯位移之上的交叉弛豫似乎控制着阈值之前的热量产生,而激发态吸收和晶体杂质可能是控制阈值以上多余热量产生的机制。

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