Origin of Ferroelectricity in Orthorhombic LuFeO
arXiv:1710.02381 · doi:10.1103/PhysRevB.100.195116
Abstract
We demonstrate that small but finite ferroelectric polarization (0.01 C/cm) emerges in orthorhombic LuFeO () at (600 K) because of commensurate (k = 0) and collinear magnetic structure. The synchrotron x-ray and neutron diffraction data suggest that the polarization could originate from enhanced bond covalency together with subtle contribution from lattice. The theoretical calculations indicate enhancement of bond covalency as well as the possibility of structural transition to the polar phase below . The phase, in fact, is found to be energetically favorable below in orthorhombic LuFeO ( with very small energy difference) than in isostructural and nonferroelectric LaFeO or NdFeO. Application of electric field induces finite piezostriction in LuFeO via electrostriction resulting in clear domain contrast images in piezoresponse force microscopy.
12 pages, 8 figures