期刊论文详细信息
Magnetoelectric memory in reentrant frozen state and considerable ferroelectricity in the multiferroic spin-chain compound Sm2BaNiO5
Article
关键词: OPTICAL SPECTROSCOPY;    NICKELATES R2BANIO5;    TRIANGULAR-LATTICE;    GAP EXCITATIONS;    RARE-EARTH;    GLASS;    DIFFRACTION;    TRANSITIONS;    ND2BANIO5;    DYNAMICS;   
DOI  :  10.1103/PhysRevB.95.094402
来源: SCIE
【 摘 要 】

We report intrinsic memory effect in magnetization and dielectricity for the spin-chain compound Sm2BaNiO5, pointing the cooperative glassy response below similar to 8K. Signature of anomaly around 8 K is verified by the magnetization, heat capacity, dielectric permittivity, magnetostriction, and structural parameters as obtained from the synchrotron diffraction studies. Intriguingly, the memory effect is observed well below the magnetic and ferroelectric ordering temperatures, pointing to a reentrant frozen state. Ferroelectricity emerges above antiferromagnetic Neel temperature at 45 K. For 4.5 kV/cm poling field the spontaneous electric polarization attains the value of 1300 mu C/m2, that is the highest value in the R2BaNiO5 series. Synchrotron diffraction studies confirm that ferroelectricity emerges due to structural transition from the centrosymmetric Immm to a noncentrosymmetric Imm2 space group. Magnetoelectric coupling is significant and scales linearly to the squared magnetization as described by the Ginzburg-Landau theory.

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