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Advances in Single-Crystal Fibers and Thin Rods Grown by Laser Heated Pedestal Growth

机译:激光加热基座生长生长的单晶纤维和细棒的研究进展

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Single-crystal fibers are an intermediate between laser crystals and doped glass fibers. They have the advantages of both guiding laser light and matching the efficiencies found in bulk crystals, which is making them ideal candidates for high-power laser and fiber laser applications. This work focuses on the growth of a flexible fiber with a core of dopant (Er, Nd, Yb, etc.) and a polycrystalline clad of yttrium aluminum garnet (YAG) that will exhibit good wave guiding properties. Direct growth or a combination of growth and cladding experiments are described. Scattering loss measurements at visible wavelengths, along with dopant profile characterization with damage threshold results, are also presented. For single-pass amplification, a single-pass linear gain of 7.4 was obtained for 29 nJ pulses of 5 ns duration at 1 MHz repetition rate. We also obtained a laser efficiency of over 58% in a diode-pumped configuration. These results confirm the potential for single-crystal fibers to overcome the limitations of the glass fibers commonly used in fiber lasers, making them prime candidates for high-power compact fiber lasers and amplifiers.
机译:单晶纤维是激光晶体和掺杂的玻璃纤维之间的中间层。它们具有引导激光并匹配块状晶体中发现的效率的优势,这使其成为大功率激光器和光纤激光器应用的理想选择。这项工作着重于具有掺杂剂芯(Er,Nd,Yb等)和钇铝石榴石(YAG)的多晶包层的柔性纤维的生长,这些光纤将表现出良好的波导性能。描述了直接生长或生长与熔覆实验的组合。还介绍了在可见光波长下的散射损耗测量结果,以及带有损伤阈值结果的掺杂剂分布特征。对于单通放大,在1 MHz重复频率下,持续5 ns的29 nJ脉冲可获得7.4的单通线性增益。在二极管泵浦配置中,我们还获得了超过58%的激光效率。这些结果证实了单晶纤维有可能克服光纤激光器中常用的玻璃纤维的局限性,使其成为高功率紧凑型光纤激光器和放大器的主要候选者。

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