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Spectroscopic properties and upconversion mechanisms in Er3+-doped fluoroindate glasses

机译:掺Er3 +的氟代玻璃的光谱性质和上转换机理

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摘要

Fluorindate glasses containing 1,2,3,4 ErF3 mol % were prepared in a dry box under argon atmosphere. Absorption, Stokes luminescence (under visible and infrared excitation), the dependence of 4S3/2, 4I11/2, and 4I13/2 lifetimes with Er concentration, and upconversion under Ti-saphire laser excitation at λ=790 nm were measured, mostly at T=77 and 300 K. The upconversion results in a strong green emission and weaker blue and red emissions whose intensity obeys a power-law behavior I∼Pn, where P is the infrared excitation power and n=1.6, 2.1, and 2.9 for the red, green, and blue emissions, respectively. The red emission exponent n=1.5 can be explained by a cross relaxation process. The green and blue emissions are due to excited state absorption (ESA) and energy transfer (ET) processes that predict a factor n=2 and n=3 for the green and blue emissions, respectively. From transient measurements we concluded that for lightly doped samples the green upconverted emission is originated due to both processes ESA and ET. However, for heavily doped samples ET is the dominant process.
机译:在干燥箱中在氩气氛下制备含有1,2,3,4 ErF3 mol%的氟代玻璃。测量了吸收,斯托克斯发光(在可见光和红外光下),4S3 / 2、4I11 / 2和4I13 / 2寿命与Er浓度的相关性,以及在Ti-saphire激光激发下在λ= 790 nm下的上转换,主要在T = 77和300K。上转换导致强绿色发射和较弱的蓝色和红色发射,其强度符合幂律行为I〜Pn,其中P为红外激发功率,n = 1.6、2.1和2.9分别是红色,绿色和蓝色发射。红色发射指数n = 1.5可以通过交叉弛豫过程来解释。绿色和蓝色发射是由于激发态吸收(ESA)和能量转移(ET)过程引起的,它们分别预测绿色和蓝色发射的因子n = 2和n = 3。根据瞬态测量,我们得出结论,对于轻掺杂样品,绿色上转换的发射源于ESA和ET过程。但是,对于重掺杂样品,ET是主要过程。

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