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Tm:glass fiber laser pumping Ho:YAG and Ho:LuAG

机译:TM:玻璃纤维激光泵送但是:维护和可以:笑

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Summary form only given. Continuous Ho:YAG and Ho:LuAG lasers were pumped by a laser diode pumped Tm:glass fiber. Slope efficiencies achieved were comparable with the product of the fraction of the pump power absorbed and the quantum defect. This laser combines several important ingredients including: beam shaping of the laser diode bars for efficient coupling to the Tm:glass fiber, double clad fiber providing good pump absorption and beam quality, fiber laser output tunable to a Ho absorption peak, and long upper laser level lifetime in a laser material containing only Ho, thus minimizing any detrimental up conversion. Although available mirrors prevented collinear pumping of the Ho lasers, slope efficiencies obtained with a noncollinear configuration were commensurate with the product of the quantum defect, /spl lambda//sub p///spl lambda//sub L/, and the single pass pump absorption. Preliminary results reported here lend support to the proposal that this hybrid fiber laser approach to 2.0 /spl mu/m lasers might offer a route for scaling to very high powers.
机译:摘要表格仅给出。连续HO:YAG和HO:通过激光二极管泵浦TM泵送Luag激光器:玻璃纤维。实现的坡度效率与吸收泵功率分数的乘积和量子缺陷相当。该激光结合了几种重要成分,包括:激光二极管条的光束成形,用于高效耦合到TM:玻璃纤维,双包层光纤提供良好的泵吸收和光束质量,光纤激光输出可调于HO吸收峰值,以及长的上部激光器仅包含HO的激光材料中的寿命,从而最大限度地减少任何有害的转换。虽然可用反射镜防止了HO激光的共线泵送,但是用非可口构型获得的斜率效率与量子缺陷的产物相称,/ SPLλ//子P /// SPL Lambda //子L /,以及单程泵吸收。初步结果报告,此处借给2.0 / SPL MU / M激光器的这种混合光纤激光方法可以提供用于缩放到非常高的功率的路线。

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