Investigation of luminescence and laser transition of Dy3+ ion in P2O5PbOBi2O3R2O3 (R = Al, Ga, In) glasses

[1]  H. J. Kim,et al.  Photoluminescence and white light generation behavior of lithium gadolinium silicoborate glasses , 2017 .

[2]  K. Jha,et al.  Spectroscopic investigation on thermally stable Dy3+ doped zinc phosphate glasses for white light emitting diodes , 2016 .

[3]  G. Rooh,et al.  Development of Li2O-SrO-GdF3-B2O3 oxyfluoride glass for white light LED application , 2016 .

[4]  S. W. Lee,et al.  Luminescence properties of Dy3+ doped lanthanum-calcium-silicaborate glass scintillator , 2016 .

[5]  D. Rao,et al.  Spectroscopic and dielectric investigations on the role of molybdenum ions in lead niobium germanosilicate glasses , 2016 .

[6]  Hyunghoon Kim,et al.  Luminescence characteristics of Dy3+ doped Gd2O3-CaO-SiO2-B2O3 scintillating glasses , 2016 .

[7]  G. Rooh,et al.  Investigation of luminescence and laser transition of Dy3+ in Li2O-Gd2O3-Bi2O3-B2O3 glasses , 2016 .

[8]  K. Nemade,et al.  Complex optical study of V2O5–P2O5–B2O3–Dy2O3 glass systems , 2016 .

[9]  M. Kaur,et al.  Thermal, optical and structural properties of Dy 3+ doped sodium aluminophosphate glasses , 2016 .

[10]  J. Pisarska,et al.  Selective oxide modifiers M2O3 (M=Al, Ga) as crystallizing agents in Er3+-doped lead phosphate glass host , 2015 .

[11]  Y. C. Ratnakaram,et al.  Luminescence properties of Dy3+ doped different fluoro-phosphate glasses for solid state lighting applications , 2015 .

[12]  E. Pun,et al.  Dy3 + doped sodium–magnesium–aluminum–phosphate glasses for greenish–yellow waveguide light sources , 2014 .

[13]  M. R. Ebeid,et al.  FTIR and physical features of Al2O3–La2O3–P2O5–PbO glasses , 2014 .

[14]  T. Yoko,et al.  Narrow Energy Gap between Triplet and Singlet Excited States of Sn2+ in Borate Glass , 2013, Scientific Reports.

[15]  V. Sudarsan,et al.  De-quenching influence of aluminum ions on Y/B ratio of Dy3+ ions in lead silicate glass matrix , 2013 .

[16]  C. K. Jayasankar,et al.  Optical and luminescence properties of Dy3+ ions in phosphate based glasses , 2013 .

[17]  C. K. Jayasankar,et al.  Optical properties and generation of white light in Dy3+-doped lead phosphate glasses , 2013 .

[18]  Md. Rahim Sahar,et al.  Synthesis and characterization of Dy3+ doped zinc–lead-phosphate glass , 2013 .

[19]  J. Schwarz,et al.  Thermal properties of Ga2O3–PbO–P2O5 glass system , 2011 .

[20]  G. Vijaya Prakash,et al.  Optical properties of Dy3+-doped sodium–aluminum–phosphate glasses , 2011 .

[21]  C. K. Jayasankar,et al.  Optical properties of Dy3+-doped P2O5 - K2O - MgO/MgF2 - Al2O3 glasses , 2011 .

[22]  J. Qiu,et al.  Spectral analysis of RE3+ (RE = Sm, Dy, and Tm): P2O5–Al2O3–Na2O glasses , 2009 .

[23]  N. Veeraiah,et al.  Structural role of In2O3 in PbO–P2O5–As2O3 glass system by means of spectroscopic and dielectric studies , 2007 .

[24]  E. Fred Schubert,et al.  Light Emitting Diodes , 1987 .

[25]  C. McCamy,et al.  Correlated color temperature as an explicit function of chromaticity coordinates , 1992 .

[26]  B. Sales,et al.  Optical, Structural, and Chemical Characteristics of Lead‐Indium Phosphate and Lead‐Scandium Phosphate Glasses , 1987 .

[27]  Sumio Sakka,et al.  Glass formation and optical properties of glasses in the systems (R2O or R'O)-Ta2O5Ga2O3 , 1986 .

[28]  N. H. Ray The structure and properties of inorganic polymeric phosphates , 1979 .

[29]  B. G. Wybourne,et al.  Spectral Intensities of the Trivalent Lanthanides and Actinides in Solution. I. Pr3+, Nd3+, Er3+, Tm3+, and Yb3+ , 1965 .

[30]  B. Judd,et al.  OPTICAL ABSORPTION INTENSITIES OF RARE-EARTH IONS , 1962 .

[31]  G. S. Ofelt Intensities of Crystal Spectra of Rare‐Earth Ions , 1962 .