EPR, ENDOR, and optical spectroscopy of the tetragonal Yb 3¿ center in KMgF 3

Electron paramagnetic resonance, electron-nuclear double resonance, and optical spectroscopy of the tetragonal Yb center in KMgF3 are reported here. The results of these experiments allow us to conclude that a previously given structural model as well as the interpretation of the optical spectrum of this center are incorrect. A model is presented and experimentally and theoretically justified. In particular, the values of the hyperfine and transferred hyperfine interaction parameters were determined as well as an experiment-based energy-level scheme. Its parametrization is performed by including simultaneously the crystal field and the spin-orbit interaction within the F term. Furthermore, a theoretical analysis of the transferred hyperfine interaction ~THFl! parameters is presented. It is further shown from optics and from microscopic calculations of the THFI parameters that g i and g' have opposite signs and that the rule of correspondence between the cubic g factor and g5 1 3 (gx1gy1gz) does not depend on the relative magnitude of the cubic and lowsymmetry crystal field acting on the rare-earth ion.