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Study of Mid-Infrared Emission and Structural Properties of Heavy Metal Oxide Glass and Optical Fibre Co-Doped with Ho3+/Yb3+ Ions

机译:Ho3 + / Yb3 +离子共掺杂的重金属氧化物玻璃和光纤的中红外发射和结构性能研究

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摘要

Bismuth-germanate glasses with low hydroxide content co-doped with Ho3+/Yb3+ 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 (hωmax = 724 cm−1), 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 Yb3+:2F5/2 quantum level indicate efficient Yb3+ → Ho3+ energy transfer (η = 61%). The developed active bismuth-germanate glass was used as the core of optical fibre operating in the mid-infrared region.
机译:从结构和光谱性质上研究了低掺氢量锗酸铋锗酸盐玻璃的掺入Ho 3 + / Yb 3 + 离子。为了降低OH -离子的含量并提高3.1 µm波长处的透射率,已在低真空条件下(45–65 mBar)进行了玻璃合成。基于重金属氧化物的主体玻璃的成分会影响最大声子能量(hωmax= 724 cm -1 ),该值低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,在共掺入摩尔%0.25 Ho2O3 / 0.75 Yb2O3的玻璃中观察到了2.87 µm的发射带。 Yb 3 + 2 F5 / 2量子能级的终生测量表明有效的Yb 3 + →Ho 3 + 能量转移(η= 61%)。发达的活性锗酸铋玻璃被用作在中红外区域工作的光纤的核心。

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