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Linear and non-linear optical properties of transparent glass-ceramics based on Co2+-doped Zn(Al,Ga)(2)O-4 spinel nanocrystals

机译:基于CO2 +掺杂Zn(Al,Ga)(2)O-4尖晶石纳米晶体的透明玻璃陶瓷的线性和非线性光学性能

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摘要

Transparent glass-ceramics containing Co2+:Zn(Al,Ga)(2)O-4 spinel nanocrystals with sizes of 6-11 nm were prepared on the basis of the glass of the ZnO-Al2O3-Ga2O3-SiO2 system nucleated by TiO2. The absorption and luminescence properties of these glass-ceramics are defined mainly by tetrahedrally coordinated Co2+ ions located in Zn(Al,Ga)(2)O-4 nanocrystals with spinel structure. Co2+ ions in glass-ceramics exhibit absorption saturation at 1.54 mu m (the (4)A(2)(4F)-> T-4(1)(4F) transition of Co2+ ions in tetrahedrally coordinated sites). This absorption band is shifted to higher wavelengths by 20 nm as compared with glass-ceramics with no Ga2O3 addition. The concentration of Co2+ ions in Zn(Al,Ga)(2)O-4 nanocrystals changes in a complex way with rise in heat-treatment temperature. Characteristic times of luminescence decay, values of ground-state absorption cross-sections, and absorption saturation recovery time were determined. The developed glass-ceramics are promising as saturable absorbers for 1.6 mu m erbium lasers.
机译:在TiO2成核的ZnO-Al2O3-Ga2O3-SiO2系统玻璃的基础上,制备了含有Co2+:Zn(Al,Ga)(2)O-4尖晶石纳米晶的透明微晶玻璃,尺寸为6-11nm。这些微晶玻璃的吸收和发光性能主要由位于尖晶石结构的Zn(Al,Ga)(2)O-4纳米晶体中的四面体配位Co2+离子决定。玻璃陶瓷中的Co2+离子在1.54μm处表现出吸收饱和(四面体配位位中Co2+离子的(4)A(2)(4F)->T-4(1)(4F)跃迁)。与未添加Ga2O3的微晶玻璃相比,该吸收带向更高波长移动了20 nm。随着热处理温度的升高,Zn(Al,Ga)(2)O-4纳米晶体中Co2+离子的浓度变化复杂。测定了发光衰减的特征时间、基态吸收截面值和吸收饱和恢复时间。所研制的微晶玻璃有望成为1.6μm铒激光器的可饱和吸收体。

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