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Physical Review Letters · 1997 · Vol. 78(23) · pp. 4494–4497
V. K. PecharskyK. A. Gschneidner

Abstract

An extremely large magnetic entropy change has been discovered in $\mathrm{Gd}{}_{5}(\mathrm{Si}{}_{2}\mathrm{Ge}{}_{2})$ when subjected to a change in the magnetic field. It exceeds the reversible (with respect to an alternating magnetic field) magnetocaloric effect in any known magnetic material by at least a factor of 2, and it is due to a first order $[\mathrm{ferromagnetic}(\mathrm{I})\ensuremath{\leftrightarrow}\mathrm{ferromagnetic}(\mathrm{II})]$ phase transition at 276 K and its unique magnetic field dependence.

Magnetic and transport properties of perovskites and related materialsHigh-pressure geophysics and materialsShape Memory Alloy TransformationsMagnetic refrigerationFerromagnetismCondensed matter physicsPhysicsMagnetic fieldPhase transitionOrder (exchange)MagnetizationAlgorithmComputer science
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