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Improvement of the Tm3+:(3) H-4 level lifetime in silica optical fibers by lowering the local phonon energy

机译:通过降低局部声子能量来提高石英光纤中Tm3 + :( 3)H-4能级寿命

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摘要

The role of some glass network modifiers on the quantum efficiency of the near-infrared fluorescence from the H-3(4) level of TM3+ ion in silica-based doped fibers is studied. Modifications of the core composition affect the spectroscopic properties of TM3+ ion. Adding 17.4 mol% of AlO3/2 to the core glass caused an increase of the H-3(4) level lifetime up to 50 mu s, 3.6 times higher than in pure silica glass. The quantum efficiency was increased from 2% to approximately 8%. On the opposite, 8 mol% of PO5/2 in the core glass made the lifetime decrease down to 9 mu s. These changes of Tm3+ optical properties are assigned to the change of the local phonon energy to which they are submitted by modifiers located in the vicinity of the doping sites. Some qualitative predictions of the maximum achievable quantum efficiency are possible using a simple microscopic model to calculate the non-radiative de-excitation rates. (c) 2007 Elsevier B.V. All rights reserved.
机译:研究了一些玻璃网络改性剂对基于二氧化硅的掺杂纤维中TM3 +离子的H-3(4)能级的近红外荧光的量子效率的作用。核心成分的改性会影响TM3 +离子的光谱性质。向芯玻璃中添加17.4 mol%的AlO3 / 2可使H-3(4)能级寿命延长至50 s s,是纯石英玻璃的3.6倍。量子效率从2%增加到大约8%。相反,芯玻璃中8 mol%的PO5 / 2使寿命降低至9 s。 Tm3 +光学性质的这些变化被分配给位于掺杂位点附近的改性剂引起的局部声子能量的变化。使用简单的微观模型来计算非辐射去激发率,可能对最大可实现的量子效率进行一些定性预测。 (c)2007 Elsevier B.V.保留所有权利。

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