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Magnetic and Interfacial Characteristics of CMOS Compatible Sputtered Topological Insulator/Ferromagnet Heterostructures

ORAL

Abstract

The growth and magnetic properties of sputtered topological insulator (TI)/ferromagnet (FM) heterostructures are presented. Magnetron sputtering produced TI, Bi2Te3 (BT) with varying crystalline order: ranging from largely amorphous to highly c-axis-oriented. A giant enhancement in Gilbert damping in TI/FM heterostructures was observed for c-axis oriented BT. Heterostructures of BT/Ni80Fe20 (Py) produced interface phases of Ni-intercalated BT (Bi2Te3:Ni). The Bi2Te3:Ni interface layer was found to support a topologically nontrivial, novel AFM phase [1]. The AFM exchange interaction strength was found to decrease dramatically for the highly amorphous BT sample [2], as evidenced by the reduction in exchange bias in hysteresis loop measurements, from 8 mT to 1 mT at 6 K, and reduction in Neél temperature from 63 K to 20 K. Further, we performed spin-torque ferromagnetic resonance experiments in the BT/Py heterostructures taking into account the distinct interface layers, showing a larger spin-Hall angle in amorphous TIs compared with the c-axis oriented TIs by ~25%, which aligns with current understanding of sputtered TIs in literature. These results pave the way for the integration of sputtered TIs in industrial CMOS devices.

Publication: 1. N. Bhattacharjee et al., Antiferromagnetic VdW Phase at the Interface of Sputtered Topological Insulator/Ferromagnet-Bi2Te3/Ni80Fe20 Heterostructures, [arXiv:2110.02845] (2021), (Manuscript under review).<br>2. N. Bhattacharjee et al., Crystalline Property Dependent Interfacial and Magnetic Characteristics of Sputtered Topological Insulator/Ferromagnet Heterostructures, (Manuscript in preparation).

Presenters

  • Nirjhar Bhattacharjee

    Northeastern University

Authors

  • Nirjhar Bhattacharjee

    Northeastern University

  • Krishnamurthy Mahalingam

    Air Force Research Lab - WPAFB

  • Adrian Fedorko

    Northeastern University

  • Valeria Lauter

    Oak Ridge National Lab

  • Matthew E Matzelle

    Northeastern University

  • Bahadur Singh

    Tata Institute of Fundamental Research, Tata Institute for Fundamental Research, TIFR, Tata Institute of Fundamental Research, Mumbai, Department of Condensed Matter Physics and Materials Science, Tata Institute of Fundamental Research, Mumbai, India

  • Alexander Grutter

    National Institute of Standards and Technology, National Institute of Standards and Tech

  • Alexandria Will-Cole

    Northeastern University

  • Michael R Page

    Air Force Research Lab - WPAFB

  • Michael McConney

    Air Force Research Lab - WPAFB

  • Robert S Markiewicz

    Northeastern University

  • Arun Bansil

    Northeastern University, Department of Physics, Northeastern University, USA

  • Donald E Heiman

    Northeastern University

  • Nian X Sun

    Northeastern University