The mechanisms and dynamics of the upconversion emissions in Yb3+-Ho3-doped fluoroindate glasses by exciting at 975 nm have been analysed.
The upconversion efficiencies have been measured as a function of temp
erature in the range from 12 to 295 K. The temporal evolution of the 5
45- and 650-nm upconversion emissions obtained under flash excitation
at 975 nm in codoped samples with 2.25 mol.% of Yb3+ and 0.75 mol.% of
Ho3+ cannot be described using the energy migration model. This indic
ates that at this concentration of Yb3+ the rapid migration regimen be
tween these ions has not been reached. A model is proposed in order to
explain the temporal evolution of these emissions taking into account
energy migration between donors and backtransfer processes. (C) 1998
Elsevier Science S.A.