Multiferroic LuFeO<sub>3</sub> on GaN, Studies of Band Offsets and a Polar-Polar Interface

ORAL

Abstract

The ability to integrate epitaxial ferroelectrics on GaN, an established wide bandgap semiconductor platform, has been recently demonstrated [Li et al, Advanced Materials Interfaces 5, 1700921 (2018)] by pulsed laser deposition (PLD) of PbxZr1-xTiO3. LuFeO3, a room temperature ferroelectric and low temperature (~147K) multiferroic material, has been integrated with LuFe2O4 layers in a superlattice that demonstrated near room temperature (~281K) magnetoelectric multiferroic behavior [Mundy et al, Nature 537, 7621 (2016)]. Its hexagonal crystal symmetry makes it promising for epitaxial integration with III-nitrides. Here, we report the molecular beam epitaxy (MBE) growth, ferroelectricity, and band offsets of hexagonal LuFeO3 on GaN. Piezoresponse force microscopy (PFM) results of LuFeO3-n type GaN interface indicate ferroelectric switching behavior. X-ray photoelectron spectroscopy (XPS) of core levels of LuFeO3-GaN interfaces was utilized to determine the valence band offset. Preliminary results indicate a valence band offset of ~1.3 eV. Assuming a bandgap of ~ 1 eV for LuFeO3, this gives a conduction band offset of ~ 1 eV. These studies highlight a potential avenue of epitaxial LuFeO3-GaN based multiferroic-semiconductor heterojunctions for memory and logic applications.

Presenters

  • Joseph Casamento

    • Cornell University

Authors

  • Joseph Casamento

    • Cornell University
  • Darrell Schlom

    • Cornell University
    • Department of Materials Science and Engineering, Cornell University
    • Department of Materials Science and Engineering, Kavli Institute at Cornell for Nanoscale Science, Cornell University
    • Materials Science and Engineering, Cornell University
    • Kavli Institute at Cornell for Nanoscale Science, Ithaca, New York 14853, USA
    • Platform for the Accelerated Realization, Analysis, & Discovery of Interface Materials (PARADIM), Cornell University
  • Huili Grace Xing

    • Cornell University
    • Electrical and Computer Engineering, Cornell University
  • Debdeep Jena

    • School of Electrical and Computer Engineering, Cornell University
    • Cornell University
    • Electrical and Computer Engineering, Cornell University