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Upconversion fluorescence in LiKGdF_5 single crystal co- doped with Er~(3+), Tb~(3+)

机译:升高荧光在LikGDF_5单晶中,用ER〜(3+),TB〜(3+)共同掺杂

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The upconversion fluorescence was recorded at room temperature and investigated in LiKGdF_5: 2%Er~(3+), 0.4%Tb~(3+) single crystal grown by the hydrothermal synthesis technique under 514.5 nm and 785 nm laser excitation, respectively. Under 514.5 nm laser excitation, four strong upconverted emission bands with peaks at 410 nm (violet), 470 nm, 486 nm and 492 nm (blue) were obtained. The former two emission bands were assigned to be corresponding to ~2H_(9/2) → ~4I_(15/2) and ~2P_(3/2) → ~4I_(11/2) transitions of Er~(3+) ions, and the latter two are possibly corresponding to ~5D_4 → ~7F_6 of Tb~(3+) and ~4F_(7/2) → ~4I_(15/2) of Er~(3+). The power dependence for 410 nm and 470 nm indicates that they arose from two-photon upconversion processes. While for 486 nm and 492 nm emission, the logarithmic slope is 0.98, which was explained by mutiphonon assisted upconversion process and energy transfer from ~4F_(7/2) (Er~(3+)) to ~5D_4(Tb~(3+)). Under 785 nm laser excitation, besides four weak upconverted emissions mentioned above, three strong emissions with peaks at 523 nm ( ~2H_(11/2) → ~4I_(15/2)), 550 nm (~4S_(3/2) → ~4I_(15/2)) and 660 nm (~4F_(9/2) → ~4I_(15/2)) were also observed. The possible upconversion mechanism for these seven emissions was all given with the help of the power dependence of upconversion emission intensity and the energy level diagram of Er~(3+) ions.
机译:上转换荧光记录在室温和在LiKGdF_5调查:2%铒〜(3+),0.4%铽〜(3+)下分别514.5 nm和785 nm激光激发,由水热合成法生长单晶。下514.5nm的激光激发方法,得到了在410nm(紫色),470纳米,486纳米和492纳米(蓝)的峰值四强转换的发射频带。前两次发射带被分配为对应于〜2H_(9/2)→〜4I_(15/2)和〜2P_(3/2)→〜4I_(11/2)〜铒的转变(3+)离子,和后两者可能对应于〜5D_4→〜7F_6铽的(3+)和〜4F_(7/2)二〜的→〜4I_(15/2)(3+)。为410 nm和470nm处的功率依赖性表明它们来自双光子上转换过程产生的。而对于486 nm和492nm处发射,对数斜率为0.98,将其通过mutiphonon辅助升频转换过程和能量转移从〜4F_(7/2)(二〜(3+))至〜5D_4(TB〜说明(3 +))。下785nm的激光激发,除了4个弱上变频的排放如上所述,三个强排放具有峰在523纳米(〜2H_(11/2)→〜4I_(15/2)),550纳米(〜4S_(3/2) →〜4I_(15/2))和660纳米(〜4F_(9/2)→〜4I_(15/2))中也观察到。对于这七个排放的所有可能的上转换机构全部是用向上变换发光的强度的功率依赖性的帮助和Er〜(3+)离子的能级图中给出。

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