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Magnetoelastic coupling across the metamagnetic transition in Ca2-xSrxRuO4 (0.2 < x < 0.5)

J. Baier, P. Steffens, O. Schumann, M. Kriener, S. Stark, H. Hartmann, O. Friedt, A. Revcolevschi, P. G. Radaelli, S. Nakatsuji, Y. Maeno, J. A. Mydosh, T. Lorenz, M. Braden

cond-mat.str-elarXiv:cond-mat/0610769

Abstract

The magnetoelastic coupling in Ca1.8Sr0.2RuO4 and in Ca1.5Sr0.5RuO4 has been studied combining high-resolution dilatometer and diffraction techniques. Both compounds exhibit strong anomalies in the thermal-expansion coefficient at zero and at high magnetic field as well as an exceptionally large magnetostriction. All these structural effects, which are strongest in Ca1.8Sr0.2RuO4, point to a redistribution of electrons between the different t2g orbitals tuned by temperature and magnetic field. The temperature and the field dependence of the thermal-expansion anomalies in Ca1.8Sr0.2RuO4 yield evidence for a critical end-point lying close to the low-temperature metamagnetic transition; however, the expected scaling relations are not well fulfilled.

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