Preparation, structure and spectral characteristics of Zinc tellurite glasses system doped with different concentrations of Tm3+

Yan Fang, Chongjun He, Fangzhou Chen, Yiyang He, Yuangang Lu, Lijuan Liu, Mingjun Xia, Chenguang Deng, Qian Li, Huiting Chen
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Abstract

Gallium-tellurite glass is a new optical material with good transmittance in the infrared region up to 6.5[Formula: see text][Formula: see text]. Three different tellurate glasses were prepared: TeO2–ZnO–Ga2O3(TZG), TeO2–ZnO–La2O3(TZL) and TeO2–ZnO–B2O3(TZB). X-ray diffraction indicates that no crystal precipitates in the three glass systems, which maintain a stable glass state. Raman scattering experiments and fluorescence emission spectroscopy measurements were carried out on the tellulate glasses doped with the same concentration of Tm[Formula: see text]. It was found that the phonon energy of TZG(TeO2–ZnO–Ga2O3)-doped thulium glass is the lowest, and the emission light at 1380[Formula: see text]nm is the strongest with [Formula: see text][Formula: see text]nm fluorescence FWHM. These results show that Tm-doped TZG glass is a good luminescent material. Refractive indices were measured by the minimum deviation method. Sellmeier dispersion equation is obtained, which can be used to calculate the refractive index within visible and near-infrared spectral range. Furthermore, different Tm[Formula: see text] concentrations (0.4%, 0.8%, 1.2% and 2%) TZG glasses were prepared, the emission spectra and fluorescence lifetime were measured, and the emitted light was strongest when the thulium ion doping concentration is 1.2%. All the results suggest that these newly developed ternary tellurite glass systems are promising candidates for near/mid-infrared laser glass fibers, fiber amplifiers, or lasers.
掺杂不同浓度 Tm3+ 的锌碲玻璃体系的制备、结构和光谱特性
镓碲玻璃是一种新型光学材料,在红外区域具有良好的透射率,最高可达 6.5[式:见正文][式:见正文]。我们制备了三种不同的碲玻璃:TeO2-ZnO-Ga2O3(TZG)、TeO2-ZnO-La2O3(TZL)和 TeO2-ZnO-B2O3(TZB)。X 射线衍射表明,这三种玻璃体系中没有晶体析出,保持了稳定的玻璃状态。对掺杂了相同浓度 Tm[式:见正文]的 Tellulate 玻璃进行了拉曼散射实验和荧光发射光谱测量。结果发现,掺杂 TZG(TeO2-ZnO-Ga2O3)的铥玻璃的声子能量最低,1380[式:见正文]nm 处的发射光最强,荧光 FWHM 为[式:见正文][式:见正文]nm。这些结果表明,掺 Tm 的高瞻基玻璃是一种良好的发光材料。用最小偏差法测量了折射率。得到的 Sellmeier 色散方程可用于计算可见光和近红外光谱范围内的折射率。此外,还制备了不同铥离子浓度(0.4%、0.8%、1.2% 和 2%)的高致密度玻璃,并测量了其发射光谱和荧光寿命。所有结果表明,这些新开发的三元碲玻璃系统有望成为近/中红外激光玻璃纤维、光纤放大器或激光器的候选材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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阿拉丁
Tm2O3
阿拉丁
La2O3
阿拉丁
B2O3
阿拉丁
ZnO
阿拉丁
Ga2O3
阿拉丁
TeO2
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