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The influence of distributed rare earth dopant on the performance of waveguide lasers fabricated by the femtosecond laser direct-write technique

机译:分布式稀土掺杂剂对飞秒激光直接写技术制造的波导激光器性能的影响

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The development of an Yb-doped distributed Bragg reflector (DBR) waveguide laser fabricated in phosphate glass using the femtosecond laser direct-write technique is reported. The laser has the slope efficiency of 31% with the output power up to 81 mW at a pump power level of 378 mW. A theoretical model for the waveguide laser (WGL) is presented which gives emphasis to transverse integrals to investigate the energy distribution in a homogenously doped glass which is opposed to the fiber laser. The model was validated with experiments comparing a DBR WGL, and then used to study the influence of distributed rare earth dopants on the performance of such lasers. Approximately 15% of the pump power was absorbed by the doped "cladding" in the femtosecond laser inscribed Yb doped WGL case.
机译:据报道,使用使用Femtosecond激光直接写入技术在磷酸盐玻璃中制造的Yb掺杂分布式布拉格反射器(DBR)波导激光器的开发。激光器的斜率效率为31%,输出功率高达81兆瓦,泵功率水平为378兆瓦。提出了一种用于波导激光(WL)的理论模型,其强调横向积分,以研究与光纤激光器相对的均匀掺杂玻璃中的能量分布。该模型用比较DBR WGL的实验验证,然后用于研究分布式稀土掺杂剂对这种激光器性能的影响。大约15%的泵浦电力被掺杂的掺杂WGL案例的飞秒激光铭刻的掺杂“包层”吸收。

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