Change in lattice modulation upon gigantic magnetoelectric transition in GdMnO3 and TbMnO3
Arima, T. · Goto, T. · Yamasaki, Y. · Miyasaka, S. · Ishii, K. · Tsubota, M. · Inami, T. · Murakami, Y. · Tokura, Y.
Original · EN
Single-crystal synchrotron x-ray diffraction measurements in strong magnetic fields have been performed for magnetoelectric compounds GdMnO3 and TbMnO3. It has been found that the P || a ferroelectric phase induced by the application of a magnetic field at low temperatures is characterized by commensurate lattice modulation along the orthorhombic b axis with q = 1/2 and q = 1/4. The lattice modulation is ascribed to antiferromagnetic spin alignment with a modulation vector of (0 1/4 1). The change of the spin structure is directly correlated with the magnetic-field-induced electric phase transition, because any commensurate spin modulation with (0 1/4 1) should break glide planes normal to the a axis of the distorted perovskite with the Pbnm space group.
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