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CaS:EuSm films prepared by pulsed laser deposition

机译:CAS:脉冲激光沉积准备的EUSM薄膜

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Electron trapping thin films CaS:Eu,Sm have been deposited by pulsed laser deposition in vacuum and simultaneous sulfur coevaporation. The films prepared by doubly rare-earth ions doped alkaline earth sulfides CaS have the characteristics of infrared upconversion and optical storage. Its phases and microstructures were identified by X-ray diffraction. The chemical composition of the films was determined by secondary ion mass spectrum. The studies on the optical properties of the films show they can convert the infrared light (800 - 1600 nm) to red light (approximately 672 nm). Infrared upconversion efficiency of CaS:Eu,Sm thin films with different thickness has been investigated by using the ultrashort infrared laser with different FWHM from $mu@s to ps. It is shown the upconversion efficiency of CaS:Eu,Sm thin films not only depends on the growth conditions and the post annealing process, but also has the `exhaustion' phenomenon. By means of measuring transmittance and spatial resolution of CaS:Eu,Sm thin films, the post annealing process was found to promote grain growth which could obviously improve upconversion efficiency of CaS:Eu,Sm thin films, even though it had negative influence on transmittance and spatial resolution of CaS:Eu,Sm thin films.
机译:电子捕获薄膜CAS:EU,SM通过真空和同时硫沉积的脉冲激光沉积沉积。双稀土离子掺杂碱土硫化物CAS制备的薄膜具有红外上变化和光学存储的特点。通过X射线衍射鉴定其阶段和微观结构。通过二次离子质谱法测定膜的化学成分。对薄膜的光学性质的研究表明,它们可以将红外光(800-1600nm)转换为红光(约672nm)。 CAS的红外升高效率:EU,通过使用从$ Mu @ S到PS的不同FWHM使用超短的红外激光来研究具有不同厚度的SM薄膜。显示CAS:EU,SM薄膜的上变频效率不仅取决于生长条件和后退火过程,还具有“疲惫”现象。通过测量CAS的透射率和空间分辨率:EU,SM薄膜,发现后退火过程促进谷物生长,这显然可以提高CAS:EU,SM薄膜的上增强效率,即使它对透射率产生负面影响和CAS的空间分辨率:欧盟,SM薄膜。

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