Laser glass gain medium that can convert low cost 808 nm diode laser into 2.7 μm has attracted considerable interest due to its potential application for medical surgery fiber laser system. In this study, enhanced 2.7 μm emission has been achieved in Er3+:germanate glass by co-doping with Nd3+ ions under the excitation of an 808 nm diode laser. In the co-doped sample, the experimental results show that the harmful visible emissions via up-conversion were effectively restricted. The reduction of 1.5 μm emission was also detected in the co-doped sample, which indicates significant de-excitation of 4I13/2 Er3+ ion through energy transfer and non-radiative decay in Nd3+ ions. In conclusion, the 2.7 μm emission enhancement achieved was due to th...
In this paper, mid-infrared emission properties and energy transfer mechanism were investigated in E...
Er3+ singly doped and Er3+/Nd3+-codoped fluorotellurite glasses are prepared by melt-quenching metho...
National Natural Science Foundation of China [61405215, 61505232]; Youth Innovation Promotion Associ...
Laser glass gain medium that can convert low cost 808 nm diode laser into 2.7 mu m has attracted con...
Emission enhancement at 2.7 mu m is observed in Er3+/Pr3+-codoped germanate glasses when pumped by a...
A modified fluoride glass with high Tg (453 degrees C) and Tx(onset)-Tg(138 degrees C) value was stu...
A modified fluoride glass with high Tg (453 degrees C) and Tx(onset)-Tg(138 degrees C) value was stu...
Spectroscopic property and energy transfer processes of singly doped and codoped Er3+ and Nd3+ fluor...
Spectroscopic property and energy transfer processes of singly doped and codoped Er3+ and Nd3+ fluor...
The motivation for this research is that the emission spectra using directly pumped laser diodes hav...
Enhanced 2.7 mu m emission is obtained in Er3+/Tm3+ and Er3+/Ho3+ codoped ZBYA glasses. Absorption a...
We present a detailed characterization of enhanced 2.0 mu m emission and energy transfer processes b...
International audienceIn present work, a novel sensitized ion Sm3+ activated Yb3+/Ho3+ co-doped sili...
Enhanced bandwidth of MIR emission from Yb3+/Er3+/Dy3+ triply doped low phonon oxide glass system ha...
A germanate-tellurite glass (GeO2-TeO2-K2O-Nb2O5-La2O3) with thulium doping has been investigated fo...
In this paper, mid-infrared emission properties and energy transfer mechanism were investigated in E...
Er3+ singly doped and Er3+/Nd3+-codoped fluorotellurite glasses are prepared by melt-quenching metho...
National Natural Science Foundation of China [61405215, 61505232]; Youth Innovation Promotion Associ...
Laser glass gain medium that can convert low cost 808 nm diode laser into 2.7 mu m has attracted con...
Emission enhancement at 2.7 mu m is observed in Er3+/Pr3+-codoped germanate glasses when pumped by a...
A modified fluoride glass with high Tg (453 degrees C) and Tx(onset)-Tg(138 degrees C) value was stu...
A modified fluoride glass with high Tg (453 degrees C) and Tx(onset)-Tg(138 degrees C) value was stu...
Spectroscopic property and energy transfer processes of singly doped and codoped Er3+ and Nd3+ fluor...
Spectroscopic property and energy transfer processes of singly doped and codoped Er3+ and Nd3+ fluor...
The motivation for this research is that the emission spectra using directly pumped laser diodes hav...
Enhanced 2.7 mu m emission is obtained in Er3+/Tm3+ and Er3+/Ho3+ codoped ZBYA glasses. Absorption a...
We present a detailed characterization of enhanced 2.0 mu m emission and energy transfer processes b...
International audienceIn present work, a novel sensitized ion Sm3+ activated Yb3+/Ho3+ co-doped sili...
Enhanced bandwidth of MIR emission from Yb3+/Er3+/Dy3+ triply doped low phonon oxide glass system ha...
A germanate-tellurite glass (GeO2-TeO2-K2O-Nb2O5-La2O3) with thulium doping has been investigated fo...
In this paper, mid-infrared emission properties and energy transfer mechanism were investigated in E...
Er3+ singly doped and Er3+/Nd3+-codoped fluorotellurite glasses are prepared by melt-quenching metho...
National Natural Science Foundation of China [61405215, 61505232]; Youth Innovation Promotion Associ...