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Magnetic Proximity induced efficient charge-to-spin conversion in large area PtSe$_{2}$/Ni$_{80}$Fe$_{20}$ heterostructures

Materials Science 2023-12-29 v1 Mesoscale and Nanoscale Physics

Abstract

As a topological Dirac semimetal with controllable spin-orbit coupling and conductivity, PtSe2_2, a transition-metal dichalcogenide, is a promising material for several applications from optoelectric to sensors. However, its potential for spintronics applications is yet to be explored. In this work, we demonstrate that PtSe2_{2}/Ni80_{80}Fe20_{20} heterostructure can generate a large damping-like current-induced spin-orbit torques (SOT), despite the absence of spin-splitting in bulk PtSe2_{2}. The efficiency of charge-to-spin conversion is found to be (0.1±0.02)(-0.1 \pm 0.02)~nm1^{-1} in PtSe2_{2}/Ni80_{80}Fe20_{20}, which is three times that of the control sample, Ni80_{80}Fe20_{20}/Pt. Our band structure calculations show that the SOT due to the PtSe2_2 arises from an unexpectedly large spin splitting in the interfacial region of PtSe2_2 introduced by the proximity magnetic field of the Ni80_{80}Fe20_{20} layer. Our results open up the possibilities of using large-area PtSe2_{2} for energy-efficient nanoscale devices by utilizing the proximity-induced SOT.

Keywords

Cite

@article{arxiv.2307.11524,
  title  = {Magnetic Proximity induced efficient charge-to-spin conversion in large area PtSe$_{2}$/Ni$_{80}$Fe$_{20}$ heterostructures},
  author = {Richa Mudgal and Alka Jakhar and Pankhuri Gupta and Ram Singh Yadav and B. Biswal and P. Sahu and Himanshu Bangar and Akash Kumar and Niru Chowdhury and Biswarup Satpati and B. R. K. Nanda and S. Satpathy and Samaresh Das and P. K. Muduli},
  journal= {arXiv preprint arXiv:2307.11524},
  year   = {2023}
}

Comments

18 pages, 4 figures