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Ultraviolet upconversion fluorescence of Er^3+ induced by 1560 nm laser excitation
57
Citations
16
References
2010
Year
Excitation Energy TransferChemistryElectronic Excited StateOptical SpectroscopyRadiation OncologyPhotophysical PropertyBiophysicsHealth SciencesPhotonicsMultiphoton UpconversionPhotochemistryPhysicsUpconversion LuminescenceExcited ErQuantum ChemistryBack EtSynchrotron RadiationUltraviolet Upconversion FluorescenceExcited State PropertyLaser PhotochemistryNatural SciencesSpectroscopyMultiphoton Process
We observed multiphoton upconversion (UC) emissions from the high-energy states ((2)I(11/2), (4)D(7/2), (4)G(9/2), (2)D(5/2), (2)K(13/2), and (2)P(3/2)) of Er(3+) ions in Yb(3+)-Er(3+) codoped beta-NaYF(4) microcrystals under 1560 nm excitation. Analysis indicated that the highest-order emissions came from 11-photon UC processes. In the codoped system, the energy transfer (ET) from Er(3+)((4)I(11/2)) to Yb(3+)((2)F(5/2)) and subsequently the back ET from Yb(3+) to Er(3+) played important roles in populating these high-energy states of Yb(3+) and Er(3+). Several different UC processes work simultaneously to populate excited Er(3+) in this codoped sample.
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