Proposal for all-electrical skyrmion detection in van der Waals tunnel junctions

Fuente: arXiv
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Autori principali: Li, Dongzhe, Haldar, Soumyajyoti, Heinze, Stefan
Natura: Preprint
Pubblicazione: 2023
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author Li, Dongzhe
Haldar, Soumyajyoti
Heinze, Stefan
author_facet Li, Dongzhe
Haldar, Soumyajyoti
Heinze, Stefan
contents A major challenge for magnetic skyrmions in atomically thin van der Waals (vdW) materials is reliable skyrmion detection. Here, based on rigorous first-principles calculations, we show that all-electrical skyrmion detection is feasible in 2D vdW magnets via scanning tunneling microscopy (STM) and in planar tunnel junctions. We use the nonequilibrium Green's function method for quantum transport in planar junctions, including self-energy due to electrodes and working conditions, going beyond the standard Tersoff-Hamann approximation. We obtain a very large tunneling anisotropic magnetoresistance (TAMR) around the Fermi energy for a vdW tunnel junction based on graphite/Fe$_3$GeTe$_2$/germanene/graphite. For atomic-scale skyrmions the noncollinear magnetoresistance (NCMR) reaches giant values. We trace the origin of the NCMR to spin-mixing between spin-up and -down states of $p_z$ and $d_{z^2}$ character at the surface atoms. Both TAMR and NCMR are drastically enhanced in tunnel junctions with respect to STM geometry due to orbital symmetry matching at the interface.
format Preprint
id arxiv_https___arxiv_org_abs_2309_03828
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Proposal for all-electrical skyrmion detection in van der Waals tunnel junctions
Li, Dongzhe
Haldar, Soumyajyoti
Heinze, Stefan
Materials Science
Mesoscale and Nanoscale Physics
A major challenge for magnetic skyrmions in atomically thin van der Waals (vdW) materials is reliable skyrmion detection. Here, based on rigorous first-principles calculations, we show that all-electrical skyrmion detection is feasible in 2D vdW magnets via scanning tunneling microscopy (STM) and in planar tunnel junctions. We use the nonequilibrium Green's function method for quantum transport in planar junctions, including self-energy due to electrodes and working conditions, going beyond the standard Tersoff-Hamann approximation. We obtain a very large tunneling anisotropic magnetoresistance (TAMR) around the Fermi energy for a vdW tunnel junction based on graphite/Fe$_3$GeTe$_2$/germanene/graphite. For atomic-scale skyrmions the noncollinear magnetoresistance (NCMR) reaches giant values. We trace the origin of the NCMR to spin-mixing between spin-up and -down states of $p_z$ and $d_{z^2}$ character at the surface atoms. Both TAMR and NCMR are drastically enhanced in tunnel junctions with respect to STM geometry due to orbital symmetry matching at the interface.
title Proposal for all-electrical skyrmion detection in van der Waals tunnel junctions
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2309.03828