APS Logo

Effect of Misfit Dislocation in SrIrO<sub>3</sub> heterostructures

ORAL

Abstract

Iridates benefit from a large spin-orbit coupling where the Ir-O bond geometry strongly impacts both electronic and magnetic properties leading to topologically non-trivial spin textures. The coupled spin and charge combined with interface engineering provides a unique opportunity to harvest the expected magnetoelectric coupling in BaTiO3 (BTO)/ SrIrO3 (SIO) superlattices where induced non-centrosymmetricity is present. A clear picture of the microstructures at interface is required for understanding the intrinsic structure-property relationship. By using scanning/transmission electron microscopy, we studied the structural feature of the BTO/SIO superlattices on SrTiO3 (001) substrate. Misfit dislocations are found in the superlattices to compensate the large lattice parameter and octahedra rotation mismatch between BTO and SIO. Due to the gradual relaxation of mismatch strain, the density of the misfit dislocation changes as a function of the superlattice thickness, and it almost disappears under a certain thickness. Moreover, the effect of the misfit dislocation on the magnetic property will also be discussed.

Presenters

  • Zhen Wang

    Louisiana State University, Baton Rouge, Louisiana State University

Authors

  • Zhen Wang

    Louisiana State University, Baton Rouge, Louisiana State University

  • David A Howe

    Louisiana State University, Baton Rouge

  • Prahald Siwakoti

    Louisiana State University, Baton Rouge

  • Mohammad Saghayezhian

    Louisiana State University, Baton Rouge

  • Yimei Zhu

    Department of Condensed Matter Physics and Materials Science, Brookhaven National Laboratory, Brookhaven National Laboratory, Brookhaven National Lab, Condensed Matter Physics and Materials Science, Brookhaven National Laboratory, Department of Energy Science and Technology, Brookhaven National Laboratory

  • E Ward Plummer

    Louisiana State University, Baton Rouge, Department of Physics & Astronomy, Louisiana State University

  • Jiandi Zhang

    Louisiana State University, Baton Rouge