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Origin of near to middle infrared luminescence and energy transfer process of Er3+/Yb3+co-doped fluorotellurite glasses under different excitations

机译:Er3 + / Yb3 +共掺杂氟碲酸盐玻璃在不同激发下近中红外发光的起源和能量转移过程

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摘要

We report the near to middle infrared luminescence and energy transfer process of Er3+/Yb3+ co-doped fluorotellurite glasses under 980, 1550 and 800 nm excitations, respectively. Using a 980 nm laser diode pump, enhanced 1.5 and 2.7 μm emissions from Er3+:I13/2→4I15/2 and I11/2→4I13/2 transitions are observed, in which Yb3+ ions can increase pumping efficiency and be used as energy transfer donors. Meanwhile, Yb3+ can also be used as an acceptor and intensive upconversion luminescence of around 1000 nm is achieved from Er3+:I11/2→4I15/2 and Yb3+: F5/2→4F7/2 transitions using 1550 nm excitation. In addition, the luminescence properties and variation trendency by 800 nm excitation is similar to that using 1550 nm excitation. The optimum Er3+ and Yb3+ ion ratio is 1:1.5 and excess Yb3+ ions decrease energy transfer efficiency under the two pumpings. These results indicate that Er3+/Yb3+ co-doped fluorotellurite glasses are potential middle- infrared laser materials and may be used to increase the efficiency of the silicon solar cells.
机译:我们分别报道了在980、1550和800 nm激发下Er 3 + / Yb 3 + 共掺杂氟碲酸盐玻璃的近中红外发光和能量转移过程。使用980 nm激光二极管泵浦,可提高Er 3 + :I13 / 2→ 4 I15 / 2和I11 / 2→ 4发出的1.5和2.7μm辐射观察到 I13 / 2跃迁,其中Yb 3 + 离子可以提高泵浦效率并用作能量传递供体。同时,Yb 3 + 也可以用作受体,并且从Er 3 + :I11 / 2→ 4 < / sup> I15 / 2和Yb 3 + :使用1550nm激发,F5 / 2→ 4 F7 / 2跃迁。此外,800 nm激发的发光特性和变化趋势与1550 nm激发的相似。最佳的Er 3 + 和Yb 3 + 离子比为1:1.5,过量的Yb 3 + 离子降低了两次泵送的能量传递效率。这些结果表明,Er 3 + / Yb 3 + 共掺杂氟碲酸盐玻璃是潜在的中红外激光材料,可用于提高硅太阳能电池的效率。

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