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Paradoxical Magnetic Cooling in a Structural Transition Model

Peter Borrmann, Heinrich Stamerjohanns, Eberhard R. Hilf, David Tomanek

cond-mat.stat-mecharXiv:cond-mat/0009048

Abstract

In contrast to the experimentally widely used isentropic demagnetization process for cooling to ultra-low temperatures we examine a particular classical model system that does not cool, but rather heats up with isentropic demagnetization. This system consists of several magnetite particles in a colloidal suspension, and shows the uncommon behavior of disordering structurally while ordering magnetically in an increasing magnetic field. For a six-particle system, we report an uncommon structural transition from a ring to a chain as a function of magnetic field and temperature.

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