Publication Type : Journal Article
Publisher : Elsevier BV
Source : Journal of Alloys and Compounds
Url : https://doi.org/10.1016/j.jallcom.2016.04.314
Keywords : Er3+ glasses, Optical properties, NIR luminescence, Decay time, Optical amplifiers
Campus : Amaravati
School : School of Engineering
Department : Physics
Year : 2016
Abstract : The Er3+-doped gadolinium calcium silica borate glasses of composition (55-x) B2O3 – 10 SiO2 – 25 Gd2O3 – 10 CaO – x Er2O3, where x = 0.0, 0.5, 1.0, 1.5, 2.0 and 2.5 mol %, have been prepared by conventional melt quenching technique and are characterized through optical absorption, visible and near-infrared (NIR) emission spectra and decay time measurements. Judd-Ofelt (JO) intensity parameters (Ωλ, λ = 2, 4 and 6) have been derived from the absorption spectrum of 0.5 mol % Er2O3 doped glass and in turn are used to calculate radiative properties for the important luminescent levels of Er3+ ions. The studied glasses show intense and broad green (550 nm) and red (591 nm) visible emissions under at 379 nm excitation. Upon excitation at 980 nm laser diode, an intense 1.53 μm NIR emission has been observed with the maximum full width at half maximum (FWHM) and its value is found to be 106 nm for 2.5 mol % Er3+-doped gadolinium calcium silica borate glasses. This broad luminescence locates in the region of 1420–1635 nm and covers the S, C and L bands. The decay curves of the 4I13/2 level exhibit exponential nature for all the concentrations. The lifetime of the 4I13/2 level has found to be decrease from 1.46 to 1.35 ms with increase of Er3+ ion concentration. Hence, these results clearly indicate that present glasses are suitable for efficient short and conventional-length optical amplifiers and tunable lasers.
Cite this Research Publication : C.R. Kesavulu, H.J. Kim, S.W. Lee, J. Kaewkhao, N. Wantana, S. Kothan, S. Kaewjaeng, Influence of Er3+ ion concentration on optical and photoluminescence properties of Er3+-doped gadolinium-calcium silica borate glasses, Journal of Alloys and Compounds, Elsevier BV, 2016, https://doi.org/10.1016/j.jallcom.2016.04.314