4.6 Article

Field-induced polar order at the Neel temperature of chromium in rare-earth orthochromites: Interplay of rare-earth and Cr magnetism

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PHYSICAL REVIEW B
卷 86, 期 21, 页码 -

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AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.86.214409

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  1. German programs [SFB 608, FOR 1346]
  2. European project SOPRANO

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We report field-induced switchable polarization (P similar to 0.2-0.8 mu C/cm(2)) below the Neel temperature of chromium (T-N(Cr)) in weakly ferromagnetic rare-earth orthochromites, RCrO3 (R = rare earth) but only when the rare-earth ion is magnetic. Intriguingly, the polarization in ErCrO3 (T-C = 133 K) disappears at a spin-reorientation (Morin) transition (T-SR similar to 22 K) below which the weak ferromagnetism associated with the Cr sublattice also disappears, demonstrating the crucial role of weak ferromagnetism in inducing the polar order. Further, the polarization (P) is strongly influenced by an applied magnetic field, indicating a strong magnetoelectric effect. We suggest that the polar order occurs in RCrO3, due to the combined effect of the poling field that breaks the symmetry and the exchange field on the R ion from the Cr sublattice that stabilizes the polar state. We propose that a similar mechanism could work in the isostructural rare-earth orthoferrites RFeO3 as well. DOI: 10.1103/PhysRevB.86.214409

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