Cvrček Jan, Cimrman Martin, Vojna David, Štěpánková Denisa, Foršt Ondřej, Smrž Martin, Novák Ondřej, Slezák Ondřej, Chyla Michal, Jelínek Michal, Mocek Tomáš
Opt Express. 2022 Feb 28;30(5):7708-7715. doi: 10.1364/OE.450025.
We investigated the use of crystalline coatings as the highly reflective coating of an Yb:YAG thin disk directly bonded onto a silicon carbide heatsink. Compared to commonly used ion-beam-sputtered coatings, it possesses lower optical losses and higher thermal conductivity, resulting in better heat management and laser outputs. We pumped the disk up to 1.15 kW at 969 nm and reached 665 W of average output power, and disk temperature of 107 °C with a highly multi-modal V-cavity. These promising results were reached with this novel design despite the adoption of a cheap silicon carbide substrate having more than 3 times lower thermal conductivity compared to frequently used CVD diamond.
我们研究了使用晶体涂层作为直接键合在碳化硅散热器上的镱镱铝石榴石(Yb:YAG)薄盘的高反射涂层。与常用的离子束溅射涂层相比,它具有更低的光学损耗和更高的热导率,从而实现更好的热管理和激光输出。我们在969纳米波长下将薄盘泵浦至1.15千瓦,通过一个高度多模的V型腔获得了665瓦的平均输出功率以及107摄氏度的薄盘温度。尽管采用了一种热导率比常用的化学气相沉积(CVD)金刚石低三倍以上的廉价碳化硅衬底,但这种新颖的设计仍取得了这些令人鼓舞的结果。