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Optical studies of Eu
3+
doped oxyfluoroborate glass
K. K. Mahato
, S. B. Rai, Anita Rai
Department of Biophysics, Manipal School of Life Sciences, Manipal
Research output
:
Contribution to journal
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Article
›
peer-review
55
Citations (Scopus)
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3+
doped oxyfluoroborate glass'. Together they form a unique fingerprint.
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Engineering & Materials Science
Stimulated emission
100%
Fluorescence quenching
99%
Photoacoustic effect
79%
Light absorption
76%
Rare earths
62%
Energy transfer
58%
Fluorescence
58%
Quenching
52%
Glass
40%
Lasers
38%
Chemical Compounds
Photoacoustic Spectra
79%
Stimulated Emission
69%
Oscillator Strength
62%
Laser Induced Fluorescence Spectroscopy
56%
Absorptivity
48%
Fluorescence Quenching
47%
Fluorescence Spectrum
45%
Energy Transfer
43%
Lanthanoid Atom
38%
Glass
34%
UV/VIS Spectroscopy
31%
Physics & Astronomy
glass
29%
quenching
27%
dipoles
24%
radiative lifetime
19%
stimulated emission
18%
oscillator strengths
17%
laser induced fluorescence
17%
transition probabilities
17%
rare earth elements
14%
optical absorption
14%
energy transfer
13%
fluorescence
12%
life (durability)
11%
cross sections
9%