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. 2014 Feb 5;26(5):056003.
doi: 10.1088/0953-8984/26/5/056003. Epub 2014 Jan 20.

Critical behaviour of nanocrystalline gadolinium: evidence for random uniaxial dipolar universality class

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Critical behaviour of nanocrystalline gadolinium: evidence for random uniaxial dipolar universality class

A Ferdinand et al. J Phys Condens Matter. .

Abstract

We report on how nanocrystal size affects the critical behaviour of the rare-earth metal Gd near the ferromagnetic-to-paramagnetic phase transition. The asymptotic critical behaviour of the coarse-grained polycrystalline sample (with an average crystallite size of L≅100 μm) is that of a (pure) uniaxial dipolar ferromagnet, as is the case with single crystal Gd, albeit the width of the asymptotic critical region (ACR) is reduced. As the grain size approaches ∼30 nm, the ACR is so narrow that it could not be accessed in the present experiments. Inaccessibly narrow ACR for L ∼ 30 nm and continuous increase in the width of the ACR as L decreases from 16 to 9.5 nm basically reflect a crossover to the random uniaxial dipolar fixed point caused by the quenched random exchange disorder prevalent at the internal interfaces (grain boundaries).

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