Phase diagram of diluted Ising ferromagnet LiHoYF
arXiv:1611.09777 · doi:10.1103/PhysRevB.94.174443
Abstract
We present a systematic study of the phase diagram of LiHoYF () Ising ferromagnets obtained from neutron scattering measurements and mean-field calculations. We show that while the thermal phase transition decreases linearly with dilution, as predicted by mean-field theory, the critical transverse field at the quantum critical point is suppressed much faster. This behavior is related to competition between off-diagonal dipolar coupling and quantum fluctuations that are tuned by doping and applied field, respectively. In this paper, we quantify the deviation of the experimental results from mean-field predictions, with the aim that this analysis can be used in future theoretical efforts towards a quantitative description.
9 pages, 9 figures
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Cited by in corpus (5)
- LiHoF4 as a spin-half non-standard quantum Ising system
- Quantum Monte Carlo study of the bond- and site-diluted transverse-field Ising model
- The Effect of Intrinsic Quantum Fluctuations on the Phase Diagram of Anisotropic Dipolar Magnets
- Off-Diagonal dipolar interactions in the mixed Ising--XY magnet
- Nuclear magnetic resonance studies in a model transverse field Ising system