Fujita Shogo, Tanaka Hiroki, Kannari Fumihiko
Appl Opt. 2020 Jun 10;59(17):5124-5130. doi: 10.1364/AO.394792.
We investigated whether : and : (YAG) can work as gain media for high-power visible lasers and replace trivalent praseodymium (Pr)-doped fluoride crystals, with particular focus on thermal loading resistivity. : exhibits a high laser gain at 747 nm, and we obtained a maximum output power of 1.2 W and a slope efficiency of 26.7% with high-power GaN laser diode pumping. Excited state absorption and large phonon energy hinder laser oscillation of Pr:YAG at room temperature. We obtained 616 nm laser oscillation of Pr:YAG at 40 K. Furthermore, we achieved a visible laser with Pr:YAG ceramics for the first time. The maximum output power is ∼30 with a slope efficiency of ∼0.7.
我们研究了钇铝石榴石(YAG)是否可以作为高功率可见激光器的增益介质,并替代掺三价镨(Pr)的氟化物晶体,特别关注其热负载抗性。YAG在747nm处表现出高激光增益,通过高功率氮化镓激光二极管泵浦,我们获得了1.2W的最大输出功率和26.7%的斜率效率。激发态吸收和大声子能量阻碍了Pr:YAG在室温下的激光振荡。我们在40K时实现了Pr:YAG的616nm激光振荡。此外,我们首次用Pr:YAG陶瓷实现了可见激光。最大输出功率约为30,斜率效率约为0.7。