Low temperature dynamic freezing and the fragility of ordering in Tb2Sn2O7
arXiv:1211.6047 · doi:10.1103/PhysRevB.83.140410
Abstract
We have probed the low temperature magnetic behavior of the ordered spin ice material Tb2Sn2O7 through ac magnetic susceptibility measurements of both the pure material and samples with small percentages of Ti substituted on the Sn sublattice. We observe a clear signature for the previously reported ordering transition at TC = 850 mK, as well as evidence for dynamic freezing at temperatures well below TC, confirming the persistence of significant magnetic fluctuations deep in the spin-ordered regime. The long range ordering transition was completely suppressed with as little as 5% Ti for Sn substitution, and 10% Ti substitution resulted in a spin-glass-like spin freezing transition near 250 mK. The results demonstrate that the long range magnetic ordering is surprisingly fragile in this system.
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Cited by in corpus (5)
- Lightly stuffed pyrochlore structure of single-crystalline Yb2Ti2O7 grown by the optical floating zone technique
- Incipient Ferromagnetism in Tb2Ge2O7: Application of Chemical Pressure to the Enigmatic Spin Liquid, Tb2Ti2O7
- Quenched crystal field disorder and magnetic liquid ground states in Tb2Sn2-xTixO7
- Doping-induced quantum cross-over in ErTiSnO
- Melting of spin ice state and development of fifth order susceptibility with magnetic field in pyrochlore Tb2Sn2O7