English

Electric field control of deterministic current-induced magnetization switching in a hybrid ferromagnetic/ferroelectric structure

Materials Science 2017-08-02 v1

Abstract

All-electrical and programmable manipulations of ferromagnetic bits are highly pursued for the aim of high integration and low energy consumption in modern information technology. Methods based on the spin-orbit torque switching in heavy metal/ferromagnet structures have been proposed with magnetic field, and recently are heading toward deterministic switching without external magnetic field. Here we demonstrate that an in-plane effective magnetic field can be induced by an electric field without breaking the symmetry of the structure of the thin film, and realize the deterministic magnetization switching in a hybrid ferromagnetic/ferroelectric structure with Pt/Co/Ni/Co/Pt layers on PMN-PT substrate. The effective magnetic field can be reversed by changing the direction of the applied electric field on the PMN-PT substrate, which fully replaces the controllability function of the external magnetic field. The electric field is found to generate an additional spin-orbit torque on the CoNiCo magnets, which is confirmed by macrospin calculations.

Keywords

Cite

@article{arxiv.1604.05561,
  title  = {Electric field control of deterministic current-induced magnetization switching in a hybrid ferromagnetic/ferroelectric structure},
  author = {Kaiming Cai and Meiyin Yang and Hailang Ju and Kevin William Edmonds and Baohe Li and Yu Sheng and Bao Zhang and Nan Zhang and Shuai Liu and Yang Ji and Houzhi Zheng and Kaiyou Wang},
  journal= {arXiv preprint arXiv:1604.05561},
  year   = {2017}
}

Comments

15 pages, 4 figures