Electronic ground-state hysteresis under magnetic field in GdMn2O5


Electronic ground-state hysteresis under magnetic field in GdMn2O5

Balédent, V.; Vaunat, A.; Petit, S.; Nataf, L.; Chattopadhyay, S.; Raymond, S.; Foury-Leylekian, P.

Abstract

In this paper, we investigate the physical properties of the type-II multiferroic GdMn2O5 material by means of neutron scattering, electric polarization, and magnetization measurements. A complex (T,H) phase diagram shows up, with especially a field-induced magnetic transition around 11 T at low temperature. The high-field phase is accompanied by an additional electric polarization along both the a and b directions, as authorized by symmetry, but never observed experimentally up to now. While the magnetic properties recover their initial states after driving the field back to zero, the polarization along a shows a significant increase. This behavior is observed for all directions of the magnetic field. It constitutes a novel and striking manifestation of the magnetoelectric coupling, resulting in the establishment of a new ground state at zero magnetic field.

Beteiligte Forschungsanlagen

  • Hochfeld-Magnetlabor (HLD)

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