English

Non-uniform Superlattice Magnetic Tunnel Junctions

Mesoscale and Nanoscale Physics 2023-03-31 v2

Abstract

We propose a new class of non-uniform superlattice magnetic tunnel junctions (Nu-SLTJs) with the Linear, Gaussian, Lorentzian, and P\"oschl-teller width and height based profiles manifesting a sizable enhancement in the TMR(104106%\approx 10^4-10^6\%) with a significant suppression in the switching bias(\approx9 folds) owing to the physics of broad-band spin filtering. By exploring the negative differential resistance region in the current-voltage characteristics of the various Nu-SLTJs, we predict the Nu-SLTJs offer the fastest spin transfer torque switching in the order of a few hundred picoseconds. We self-consistently employ the atomistic non-equilibrium Green's function formalism coupled with the Landau-Lifshitz-Gilbert-Slonczewski equation to evaluate the device performance of the various Nu-SLTJs. We also present the design of minimal three-barrier Nu-SLTJs having significant TMR(104%\approx 10^4\%) and large spin current for ease of device fabrication. We hope that the class of Nu-SLTJs proposed in this work may lay the bedrock to embark on the exhilarating voyage of exploring various non-uniform superlattices for the next generation of spintronic devices.

Keywords

Cite

@article{arxiv.2212.07202,
  title  = {Non-uniform Superlattice Magnetic Tunnel Junctions},
  author = {Sabarna Chakraborti and Abhishek Sharma},
  journal= {arXiv preprint arXiv:2212.07202},
  year   = {2023}
}
R2 v1 2026-06-28T07:34:21.572Z