Absorption Spectra, Defect Site Distribution and Upconversion Excitation Spectra of CaF$_2$/SrF$_2$/BaF$_2$:Yb$^{3+}$:Er$^{3+}$ Nanoparticles
Sangeetha Balabhadra, Michael F. Reid, Vladimir Golovko, Jon-Paul R., Wells

TL;DR
This study investigates the distribution and behavior of Yb$^{3+}$ ions in Er$^{3+}$ co-doped fluoride nanoparticles, revealing site-specific absorption and upconversion properties that influence optimal laser excitation strategies.
Contribution
It provides detailed analysis of Yb$^{3+}$ site distributions and their impact on upconversion fluorescence in fluoride nanoparticles, highlighting heterogeneity and host lattice effects.
Findings
Yb$^{3+}$ ions predominantly occupy cubic and cluster sites.
Cluster centers exhibit absorption near 10205 cm$^{-1}$, relevant for 980 nm lasers.
Heterogeneous Yb$^{3+}$ centers affect Er$^{3+}$ upconversion efficiency.
Abstract
We report studies of the Yb site distribution in Er co-doped upconverting alkaline earth fluoride nanoparticles using high-resolution absorption measurements. Similar to bulk crystals, Yb single ion cubic (O), and preferentially formed clusters are the dominant centres for moderate dopant concentrations. At higher concentrations, and for larger particle sizes, a minority C(F) centre is also observed. Furthermore, the behaviour of Yb cluster centres, whose primary absorption band is located around 10205 cm (in near resonance with 980 nm laser diodes) was studied by tuning the metal cation in the host lattice from CaSrBa. For co-doped materials, with heterogeneous cluster centres, Er upconversion fluorescence was observed upon selective excitation of Yb, resulting in strong…
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