Nuclear magnetic resonance studies in a model transverse field Ising system

The suppression of ferroquadrupolar order in TmVO 4 in a magnetic field is well-described by the transverse field Ising model, enabling detailed studies of critical dynamics near the quantum phase transition. We describe nuclear magnetic resonance measurements in pure and Y-doped single crystals. Th...

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Veröffentlicht in:Frontiers in physics 2024-06, Vol.12
Hauptverfasser: Nian, Y.-H., Vinograd, I., Chaffey, C., Li, Y., Zic, M. P., Massat, P., Singh, R. R. P., Fisher, I. R., Curro, N. J.
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Sprache:eng
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Zusammenfassung:The suppression of ferroquadrupolar order in TmVO 4 in a magnetic field is well-described by the transverse field Ising model, enabling detailed studies of critical dynamics near the quantum phase transition. We describe nuclear magnetic resonance measurements in pure and Y-doped single crystals. The non-Kramers nature of the ground state doublet leads to a unique form of the hyperfine coupling that exclusively probes the transverse field susceptibility. Our results show that this quantity diverges at the critical field, in contrast to the mean-field prediction. Furthermore, we find evidence for quantum critical fluctuations present near Tm-rich regions in Y-doped crystals at levels beyond which long-range order is suppressed, suggesting the presence of quantum Griffiths phases.
ISSN:2296-424X
2296-424X
DOI:10.3389/fphy.2024.1393229