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Anisotropic magnetization of the Van Vleck paramagnet LiTmF4at low temperatures and high magnetic fields

Identifieur interne : 000685 ( Pascal/Checkpoint ); précédent : 000684; suivant : 000686

Anisotropic magnetization of the Van Vleck paramagnet LiTmF4at low temperatures and high magnetic fields

Auteurs : D. I. Abubakirov [Russie, Japon] ; K. Matsumoto [Japon] ; H. Suzuki [Japon] ; M. S. Tagirov [Russie]

Source :

RBID : Pascal:08-0486998

Descripteurs français

English descriptors

Abstract

Lithium thulium fluoride LiTmF4 is an insulating Van Vleck paramagnet with a giant magnetostriction. Magnetization of the tetragonal LiTmF4 single crystals was measured for the first time in the temperature range of 2-300 K and in magnetic fields up to 55 kOe, oriented both parallel and perpendicular to the C4 symmetry axis. In particular the angular dependence of the magnetization in the basal plane was studied. The anisotropy of magnetization in this plane grows rapidly in high fields. The temperature dependence of the magnetization in the orientation H ⁄ [001] is nonmonotonic and reproduced very well by the calculation in the framework of the crystal field theory. The discrepancies between experimental and theoretical dependences in the orientation H ⊥ [001] in high magnetic fields are attributed to the magnetostriction effects.


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Pascal:08-0486998

Le document en format XML

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<term>Lithium Thulium Fluorides Mixed</term>
<term>Low temperature</term>
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<div type="abstract" xml:lang="en">Lithium thulium fluoride LiTmF
<sub>4</sub>
is an insulating Van Vleck paramagnet with a giant magnetostriction. Magnetization of the tetragonal LiTmF
<sub>4</sub>
single crystals was measured for the first time in the temperature range of 2-300 K and in magnetic fields up to 55 kOe, oriented both parallel and perpendicular to the C
<sub>4</sub>
symmetry axis. In particular the angular dependence of the magnetization in the basal plane was studied. The anisotropy of magnetization in this plane grows rapidly in high fields. The temperature dependence of the magnetization in the orientation H ⁄ [001] is nonmonotonic and reproduced very well by the calculation in the framework of the crystal field theory. The discrepancies between experimental and theoretical dependences in the orientation H ⊥ [001] in high magnetic fields are attributed to the magnetostriction effects.</div>
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<sub>4</sub>
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