JOURNAL ARTICLE

Crystal shape-dependent magnetic susceptibility and Curie law crossover in the spin ices Dy2Ti2O7and Ho2Ti2O7

Laura BovoLudovic D. C. JaubertP. C. W. HoldsworthS. T. Bramwell

Year: 2013 Journal:   Journal of Physics Condensed Matter Vol: 25 (38)Pages: 386002-386002   Publisher: IOP Publishing

Abstract

We present an experimental determination of the isothermal magnetic susceptibility of the spin ice materials Dy2Ti2O7 and Ho2Ti2O7 in the temperature range 1.8-300 K. The use of spherical crystals has allowed accurate correction for demagnetizing fields and allowed the true bulk isothermal susceptibility χT(T) to be estimated. This has been compared against a theoretical expression based on a Husimi tree approximation to the spin ice model. Agreement between experiment and theory is excellent at T > 10 K, but systematic deviations occur below that temperature. Our results largely resolve an apparent disagreement between neutron scattering and bulk measurements that has been previously noted. They also show that the use of non-spherical crystals in magnetization studies of spin ice may introduce very significant systematic errors, although we note some interesting--and possibly new--systematics concerning the demagnetizing factor in cuboidal samples. Finally, our results show how experimental susceptibility measurements on spin ices may be used to extract the characteristic energy scale of the system and the corresponding chemical potential for emergent magnetic monopoles.

Keywords:
Spin ice Magnetic susceptibility Condensed matter physics Magnetization Spin (aerodynamics) Curie temperature Isothermal process Demagnetizing field Physics Materials science Ferromagnetism Thermodynamics Magnetic field

Metrics

30
Cited By
1.65
FWCI (Field Weighted Citation Impact)
44
Refs
0.88
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Advanced Condensed Matter Physics
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics
Multiferroics and related materials
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Physics of Superconductivity and Magnetism
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics

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