Ragin Tomasz, Baranowska Agata, Kochanowicz Marcin, Zmojda Jacek, Miluski Piotr, Dorosz Dominik
Faculty of Mechanical Engineering, Bialystok University of Technology, Wiejska 45c, 15-351 Bialystok, Poland.
Faculty of Electrical Engineering, Bialystok University of Technology, Wiejska 45d, 15-351 Bialystok, Poland.
Materials (Basel). 2019 Apr 15;12(8):1238. doi: 10.3390/ma12081238.
Bismuth-germanate glasses with low hydroxide content co-doped with Ho/Yb ions have been investigated in terms of structural and spectroscopic properties. To reduce OH⁻ ions content and improve transmittance value at the wavelength of 3.1 µm, the glass synthesis has been carried out in low vacuum conditions (45-65 mBar). The composition of the host glass based on heavy metal oxides affects the maximum phonon energy (hω = 724 cm), which low value has a positive impact on the mid-infrared emission parameters. Emission band at the wavelength of 2.87 µm was observed in glass co-doped with mol% 0.25 Ho₂O₃/0.75 Yb₂O₃ under 980 nm high power laser diode wavelength excitation. Lifetime measurements of the Yb:²F quantum level indicate efficient Yb → Ho energy transfer (η = 61%). The developed active bismuth-germanate glass was used as the core of optical fibre operating in the mid-infrared region.
已对共掺杂Ho/Yb离子且氢氧化物含量低的锗酸铋玻璃的结构和光谱特性进行了研究。为了降低OH⁻离子含量并提高3.1 µm波长处的透过率值,玻璃合成是在低真空条件(45 - 65毫巴)下进行的。基于重金属氧化物的基质玻璃组成会影响最大声子能量(hω = 724厘米),该低值对中红外发射参数有积极影响。在980 nm高功率激光二极管波长激发下,在共掺杂0.25 mol% Ho₂O₃/0.75 mol% Yb₂O₃的玻璃中观察到了2.87 µm波长处的发射带。Yb:²F量子能级的寿命测量表明Yb→Ho能量转移效率较高(η = 61%)。所研制的活性锗酸铋玻璃被用作在中红外区域工作的光纤的纤芯。