Material purification, crystal growth, and spectroscopy of Tm-doped KPb 2 Cl 5 and KPb 2 Br 5 for 2µm photonic applications

Journal of Crystal Growth(2014)

引用 9|浏览7
暂无评分
摘要
Results of the material purification, crystal growth, and optical characterization of Tm-doped KPb2Cl5 (KPC) and KPb2Br5 (KPB) for ~2μm photonic applications are presented. Undoped KPC and KPB were synthesized from ultra dry starting materials and purified through multi-pass translation in a zone-refinement system. 1wt% of ultra-dry Tm-halides (TmCl3 or TmBr3) were added to the purified host materials and molten under bubbling of HCl or HBr gas, respectively. Tm: KPC and Tm: KPB crystals were subsequently grown using the Bridgman technique. The good optical quality of the resulting crystals was indicated by infrared transmissions as high as ~70–75%. Under optical pumping, both crystals exhibited broad infrared emission bands centered at ~1.82µm with nearly exponential decay times ranging from ~2–3ms. Judd–Ofelt intensity parameters were calculated to determine the radiative lifetimes of the 3F4→3H6 Tm3+ transition. The optical absorption and emission cross-sections of Tm: KPC and Tm: KPB were determined using the McCumber theory. The investigated crystals were also evaluated as potential solid-state materials for optical cooling applications.
更多
查看译文
关键词
A1. Characterization,A2. Bridgman technique,B1. Halides,B3. Solid-state lasers
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要