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Understanding enormous redshifts in highly concentrated Mn
2+
phosphors
Arnoldus J. van Bunningen
*
, Simon Tobias Keizer
,
Andries Meijerink
*
*
Corresponding author for this work
Sub Condensed Matter and Interfaces
Condensed Matter and Interfaces
Utrecht University
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2+
phosphors'. Together they form a unique fingerprint.
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Keyphrases
Highly Concentrated
100%
Mn2+
100%
Near-infrared Emission
50%
Exchange Coupling
37%
Excitation Spectrum
25%
Near-infrared
25%
Energy Migration
25%
Broadband Near-infrared Emission
25%
Mn2+ Dopant
25%
Order of Magnitude
12%
Exchange-coupled
12%
Synthesis Conditions
12%
Relative Intensity
12%
Local Coordination
12%
Cryogenic Temperature
12%
Concentrated Systems
12%
Sublattice
12%
Mn2+ Emission
12%
Mn3+
12%
Luminescence Studies
12%
Spectral Region
12%
Temperature-dependent Luminescence
12%
Time Dependent Luminescence
12%
Trapping Centers
12%
Efficient Energy
12%
Trap Emission
12%
Engineering
Excitation Spectrum
100%
Broad Band
100%
Dopant Concentration
100%
Spectral Region
50%
Sublattice
50%
Cryogenic Temperature
50%
Chemistry
Doping Material
100%
Near Infrared Band
100%
Earth and Planetary Sciences
Emissions
100%
Broadband
33%
Cryogenic Temperature
16%
Material Science
Doping (Additives)
100%
Luminescence
50%