Novel Eu{sup 3+}-doped lead telluroborate glasses for red laser source applications
Journal Article
·
· Journal of Solid State Chemistry
- Department of Physics, Rayalaseema University, Kurnool 518002 (India)
- Department of Physics, Sri Krishnadevaraya University, Anantapur 515055 (India)
We report the absorption, luminescence and decay analysis of Eu{sup 3+}-doped lead telluroborate (PTBEu) glasses for different Eu{sup 3+} concentrations ranging from 0.1 to 2.0 mol%. Judd-Ofelt intensity parameters obtained from {sup 5}D{sub 0}{yields}{sup 7}F{sub J=0-6} emission transitions of Eu{sup 3+} were used to calculate the radiative transition probabilities, luminescence branching ratios and radiative decay times. The luminescence spectra and decay times were measured at 464 nm excitation. The optical band gap energies are also determined. The luminescence intensity ratio, color purity and emission cross-section values support that the PTBEu20 glass is a suitable candidate for red laser source applications. - Graphical abstract: Luminescence spectrum of the PTBEu20 glass with CIE coordinates. Highlights: > J-O parameters are obtained from the intensities of {sup 5}D{sub 0}{yields}{sup 7}F{sub J} transitions of Eu{sup 3+} ion. > The intensity ratio between {sup 5}D{sub 0}{yields}{sup 7}F{sub 2} and {sup 5}D{sub 0}{yields}{sup 7}F{sub 1} transitions gives the information about red color richness. > PTBEu20 glass is a suitable solid state material for red laser source applications.
- OSTI ID:
- 21580210
- Journal Information:
- Journal of Solid State Chemistry, Journal Name: Journal of Solid State Chemistry Journal Issue: 8 Vol. 184; ISSN 0022-4596; ISSN JSSCBI
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
37 INORGANIC, ORGANIC, PHYSICAL, AND ANALYTICAL CHEMISTRY
ABSORPTION
BRANCHING RATIO
CHARGED PARTICLES
CROSS SECTIONS
DECAY
DIMENSIONLESS NUMBERS
DOPED MATERIALS
EMISSION
ENERGY-LEVEL TRANSITIONS
EUROPIUM IONS
EXCITATION
IONS
LASERS
LUMINESCENCE
MATERIALS
PARTICLE DECAY
PHOTON EMISSION
RADIATIVE DECAY
SOLIDS
SORPTION
ABSORPTION
BRANCHING RATIO
CHARGED PARTICLES
CROSS SECTIONS
DECAY
DIMENSIONLESS NUMBERS
DOPED MATERIALS
EMISSION
ENERGY-LEVEL TRANSITIONS
EUROPIUM IONS
EXCITATION
IONS
LASERS
LUMINESCENCE
MATERIALS
PARTICLE DECAY
PHOTON EMISSION
RADIATIVE DECAY
SOLIDS
SORPTION