paper

Dynamics of Composite Domain Walls in Multiferroics in Magnetic Field and Their Instability

arXiv:2008.08600 · doi:10.7566/JPSJ.90.014703

Abstract

We study theoretically the dynamics of composite domain walls (DW) in multiferroic material GdFeO driven by magnetic field . Two antiferromagnetic orders of Fe and Gd spins interact Gd-ion displacement in this system with coupling at low temperatures, and we have numerically simulated the corresponding time-dependent Ginzburg-Landau equations in which magnetic field couples to Fe-spin order parameter. We vary and systematically and calculate velocity and inner structure in a stationary state for magnetic DW and magneto-electric DW. DW mobility increases with and decreases with for both DWs, but their characteristics differ between the two. We have also studied analytically the smooth characteristics of magneto-electric DW by perturbation theory. Another finding is a splitting instability at large H. A magneto-electric DW splits into a pair of magnetic DW and electric DW when is large, while a magnetic DW splits when is small. Internal structure of composite DW deforms with increasing and , and modulations in different order parameters separate in space. Their relative distances show a noticeable enhancement with approaching the splitting instability.

11 pages, 10 figures, submitted to Journal of the Physical Society of Japan