Abstract

The effects of both Er 3+ ion concentration and excited density upon frequency upconversion fluorescence emissions in Er 3+/Yb 3+-codoped LaF 3 powder are investigated. The results reveal that a higher Er 3+ concentration can induce not only upconversion emission enhancements but also the changes among the relative intensities of the 407, 519, 539 and 651 nm radiation transitions as the samples are excited within the ranges of 20 to 700 mW with 978 nm laser diode (LD) as an excitation source. The changes are described by a schematic level model with the cross-relaxation processes between Er 3+ ions and a series of dynamic equations that take into account the population of temperature dependent in Er 3+.

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