Yb3+/Tm3+ co-doped germanate-tellurite glass: conversion luminescent and temperature-sensing characteristics

Yuwei Wu, Chunhui Niu
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Abstract

Tm3+/Yb3+ co-doped germanate-tellurite glasses were prepared by high temperature melting with components of 50GeO2-20TeO2-25Na2O-3Ga2O3-2Nb2O5-2Yb2O3-xTm2O3 (x = 0.25, 0.5, 1, 1.5, 2 mol%). According to the absorption spectrum and J-O theory, the spectral line intensity parameters (Ω2, Ω4 and Ω6) of Tm3+ ions and the spectral parameters of each excitation energy level transition were calculated. Under the excitation of 980 nm LD, the up-conversion and down-conversion emission spectrum of glasses at different concentrations of Tm3+ ions were measured with the emission wavelengths at 478, 651, 808 ,1484, and 1937nm respectively, and the concentration quenching of each luminescence was found, the up-conversion emission intensity was maximum at the doping concentration of 0.1mol%, and the concentration quenching of Tm3+ ions was analyzed. Furthermore, the optical temperature sensing properties was investigated based on the 3F2 and 3H4 levels of Tm3+ ions.
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Yb3+/Tm3+ 共掺锗碲玻璃:转换发光和温度感应特性
通过高温熔融制备了 Tm3+/Yb3+ 共掺锗碲玻璃,其组分为 50GeO2-20TeO2-25Na2O-3Ga2O3-2Nb2O5-2Yb2O3-xTm2O3(x = 0.25、0.5、1、1.5、2 mol%)。根据吸收光谱和 J-O 理论,计算了 Tm3+ 离子的光谱线强度参数(Ω2、Ω4 和 Ω6)以及各激发能级跃迁的光谱参数。在980 nm LD的激发下,测量了不同浓度Tm3+离子的玻璃的上转换和下转换发射光谱,发射波长分别为478、651、808、1484和1937nm,并发现了各发光的浓度淬灭现象,上转换发射强度在掺杂浓度为0.1mol%时最大,分析了Tm3+离子的浓度淬灭现象。此外,还研究了基于 Tm3+ 离子的 3F2 和 3H4 水平的光学温度传感特性。
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