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Designing ferromagnetic polar half-metallic oxide superlattices

ORAL

Abstract

By implementing hybrid-improper ferroelectric mechanism, our first-principles-based investigation of La3+Ni3+(3d7)O3/Ca2+Ni4+(3d6)O3 superlattice showed a ferromagnetic polar ground state with half-metallic phase. The system showed a ferromagnetic Ni-Ni interaction, but the Ni-3d’s are interacting antiferromagnetically with O-2p. Due to the antiferromagnetic Ni-O interaction, we noted a reduced total magnetization in the system. The system emerged to be half-metallic due to unpaired eg electrons in Ni-3d. Further, we examined a series of compounds utilizing the trilinear mode coupling and found the same ferromagnetic polar half-metallic phase as the ground state. In addition, we discussed how the meta-stable phases can offer entirely different properties than that of ground state structure. The LnNiO3/CaNiO3 superlattices where Ln denotes La, Nd, Gd, Dy, Tm, and Lu with polar ferromagnetic spin degree of freedom through design could be crucial for memory storage and memory transport.

Presenters

  • Monirul Shaikh

    SRM University

Authors

  • Monirul Shaikh

    SRM University

  • Gowsalya Rajan

    SRM Institute of Science and Technology

  • Saurabh Ghosh

    SRM University, SRM Institute of Science and Technology KTR