Cheng Xinbin, Dong Siyu, Zhi Song, Paschel Sebastian, Balasa Istvan, Ristau Detlev, Wang Zhanshan
MOE Key Laboratory of Advanced Micro-Structured Materials, Shanghai, 200092 China.
2Institute of Precision Optical Engineering, School of Physics Science and Engineering, Tongji University, Shanghai, 200092 China.
Light Sci Appl. 2019 Jan 23;8:12. doi: 10.1038/s41377-018-0118-6. eCollection 2019.
With the ever-increasing laser power and repetition rate, thermal control of laser media is becoming increasingly important. Except for widely used air cooling or a bonded heat sink, water cooling of a laser medium is more effective in removing waste heat. However, how to protect deliquescent laser media from water erosion is a challenging issue. Here, novel waterproof coatings were proposed to shield Nd:Glass from water erosion. After clarifying the dependence of the waterproof property of single layers on their microstructures and pore characteristics, nanocomposites that dope SiO in HfO were synthesized using an ion-assisted co-evaporation process to solve the issue of a lack of a high-index material that simultaneously has a dense amorphous microstructure and wide bandgap. HfSiO/SiO multifunctional coatings were finally shown to possess an excellent waterproof property, high laser-induced damage threshold (LIDT) and good spectral performance, which can be used as the enabling components for thermal control in high-power laser cavities.
随着激光功率和重复频率的不断提高,激光介质的热控制变得越来越重要。除了广泛使用的空气冷却或粘结散热器外,激光介质的水冷在去除废热方面更有效。然而,如何保护潮解性激光介质免受水侵蚀是一个具有挑战性的问题。在此,提出了新型防水涂层以保护钕玻璃免受水侵蚀。在明确了单层防水性能对其微观结构和孔隙特征的依赖性之后,采用离子辅助共蒸发工艺合成了在氧化铪中掺杂二氧化硅的纳米复合材料,以解决缺乏同时具有致密非晶微观结构和宽带隙的高折射率材料的问题。最终表明,铪硅氧化物/二氧化硅多功能涂层具有优异的防水性能、高激光诱导损伤阈值(LIDT)和良好的光谱性能,可作为高功率激光腔内热控制的关键组件。