Demirbas Umit, Thesinga Jelto, Kellert Martin, Reuter Simon, Pergament Mikhail, Kärtner Franz X
Appl Opt. 2022 May 1;61(13):3702-3710. doi: 10.1364/AO.456316.
We have investigated room-temperature continuous-wave (cw) lasing performance of Yb:YLF oscillators in detail using rod-type crystals with low Yb-doping (2%). The laser is pumped by a low-cost, high brightness, 10 W, 960 nm single-emitter multimode diode. Laser performance is acquired in both // and // configurations, using 12 different output couplers with transmission ranging from 0.015% to 70%. We have estimated the passive loss of the Yb:YLF crystal as 0.06% per cm, corresponding to an impressive crystal figure of merit above 4000. The low-doping level not only reduces the system losses but also minimizes the thermal load as the low doped crystals enable distribution of heat load in a greater volume. Using the advantages of lower loss and improved thermal behavior, we have achieved cw output power above 4 W, cw slope efficiencies up to 78%, and a record cw tuning range covering the 993-1110 nm region (117 nm). The output power performance achieved in this initial work is limited by the available pump power, and future room-temperature Yb:YLF systems have the potential to produce higher output power levels.
我们使用低镱掺杂(2%)的棒状晶体,详细研究了镱:钇锂氟振荡器的室温连续波(cw)激光性能。该激光器由一个低成本、高亮度、10 W、960 nm单发射极多模二极管泵浦。在//和//配置下,使用12种不同的输出耦合器,其透射率范围为0.015%至70%,获得了激光性能。我们估计镱:钇锂氟晶体的无源损耗为每厘米0.06%,对应着超过4000的令人印象深刻的晶体品质因数。低掺杂水平不仅降低了系统损耗,而且由于低掺杂晶体能够在更大体积内分布热负载,从而使热负载最小化。利用较低损耗和改善热行为的优势,我们实现了超过4 W的连续波输出功率、高达78%的连续波斜率效率以及覆盖993 - 1110 nm区域(117 nm)的创纪录连续波调谐范围。在这项初步工作中实现的输出功率性能受到可用泵浦功率的限制,未来的室温镱:钇锂氟系统有可能产生更高的输出功率水平。