Neutron spectroscopic study of crystal-field excitations and the effect of the crystal field on dipolar magnetism in LiF ( = Gd, Ho, Er, Tm, and Yb)
arXiv:1510.07416 · doi:10.1103/PhysRevB.92.144422
Abstract
We present a systematic study of the crystal field interactions in the LiF, = Gd, Ho, Er, Tm and Yb, family of rare-earth magnets. Using detailed inelastic neutron scattering measurements we have been able to quantify the transition energies and wavefunctions for each system. This allows us to quantitatively describe the high-temperature susceptibility measurements for the series of materials and make predictions based on a mean-field approach for the low-temperature thermal and quantum phase transitions. We show that coupling between crystal field and phonon states leads to lineshape broadening in LiTmF and level splitting in LiYbF. Furthermore, using high resolution neutron scattering from LiHoF, we find anomalous broadening of crystal-field excitations which we attribute to magnetoelastic coupling.
16 pages, 12 figures