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The 1.53 mu m spectroscopic properties of Er3+/Ce3+/Yb3+ tri-doped tellurite glasses containing silver nanoparticles

机译:含银纳米粒子的Er3 + / Ce3 + / Yb3 +三掺杂碲酸盐玻璃的1.53μm光谱性质

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The metallic silver nanoparticles (NPs) was introduced into the Er3+/Ce3+/Yb3+ tri-doped tellurite glasses with composition TeO2-ZnO-La2O3 to improve the 1.53 mu m band fluorescence. The UV/Vis/NIR absorption spectra, 1.53 mu m band fluorescence spectra, fluorescence lifetimes, X-ray diffraction (XRD) curves, differential scanning calorimeter (DSC) curves and transmission electron microscopy (TEM) image of tri-doped tellurite glasses were measured, together with the Judd-Ofelt intensity parameters, emission cross-sections, absorption cross-sections and radiative quantum efficiencies were calculated to investigate the effects of silver NPs on the 1.53 mu m band spectroscopic properties of Er3+ ions, structural nature and thermal stability of glass hosts. It is shown that Er3+/Ce3+/Yb3+ tri-doped tellurite glasses can emit intense 1.53 mu m band fluorescence through the combined energy transfer (ET) processes from Yb3+ to Er3+ ions and Er3+ to Ce3+ ions under the 980 nm excitation. At the same time, the introduction of an appropriate amount of silver NPs can further improve the 1.53 mu m band fluorescence owing to the enhanced local electric field effect induced by localized surface Plasmon resonance (LSPR) of silver NPs and the possible energy transfer from silver NPs to Er3+ ions, and an improvement by about 120% of fluorescence intensity is found in the studied Er3+/Ce3+/Yb3+ tri-doped tellurite glass containing 0.5 mol% amount of silver NPs with average diameter of similar to 15 nm. The energy transfer mechanisms from Yb3+ to Er3+ ions and Er3+ to Ce3+ ions were also quantitatively investigated by calculating energy transfer microparameters and phonon contribution ratios. Furthermore, the thermal stability of glass host increases slightly with the introduction of silver NPs while the glass structure maintains the amorphous nature. The results indicate that the prepared Er3+/Ce3+/Yb3+ tri-doped tellurite glass with an appropriate amount of silver NPs is an excellent gain medium applied for 1.53 mu m band EDFA pumped with a 980 nm laser diode (LD). (C) 2015 Elsevier B.V. All rights reserved.
机译:将金属银纳米颗粒(NPs)引入成分组成为TeO2-ZnO-La2O3的Er3 + / Ce3 + / Yb3 +三掺杂碲酸盐玻璃中,以改善1.53μm波段的荧光。三掺杂碲酸盐玻璃的紫外/可见/近红外吸收光谱,1.53μm波段荧光光谱,荧光寿命,X射线衍射(XRD)曲线,差示扫描量热仪(DSC)曲线和透射电子显微镜(TEM)图像分别为测量测量值,并结合Judd-Ofelt强度参数,计算发射截面,吸收截面和辐射量子效率,以研究银纳米粒子对Er3 +离子的1.53μm谱带性质,结构性质和热稳定性的影响玻璃主机。结果表明,Er3 + / Ce3 + / Yb3 +三掺杂碲酸盐玻璃可以在980 nm激发下通过从Yb3 +到Er3 +离子和从Er3 +到Ce3 +离子的能量转移(ET)过程,发出1.53μm波段的强烈荧光。同时,由于银NPs的局部表面等离子体激元共振(LSPR)引起的增强的局部电场效应以及可能的银能量转移,引入适量的银NPs可以进一步改善1.53μm波段的荧光。在研究的Er3 + / Ce3 + / Yb3 +三掺杂碲酸盐玻璃中发现NPs转化为Er3 +离子,并提高了约120%的荧光强度,平均含银量为0.5 mol%,平均直径接近15 nm。通过计算能量转移微观参数和声子贡献率,还定量研究了Yb3 +到Er3 +离子和Er3 +到Ce3 +离子的能量转移机理。此外,玻璃主体的热稳定性随着银纳米颗粒的引入而略有增加,而玻璃结构保持了非晶态。结果表明,制备的具有适量的银NPs的Er3 + / Ce3 + / Yb3 +三掺杂碲酸盐玻璃是应用于由980 nm激光二极管(LD)泵浦的1.53μm波段EDFA的优异增益介质。 (C)2015 Elsevier B.V.保留所有权利。

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