Investigation of magnetic properties of $4f$-adatoms on graphene

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Carbone, Johanna P., Bouaziz, Juba, Bihlmayer, Gustav, Blügel, Stefan
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909265928650752
author Carbone, Johanna P.
Bouaziz, Juba
Bihlmayer, Gustav
Blügel, Stefan
author_facet Carbone, Johanna P.
Bouaziz, Juba
Bihlmayer, Gustav
Blügel, Stefan
contents Rare-earth (RE) atoms on top of 2D materials represent an interesting platform with the prospect of tailoring the magnetic anisotropy for practical applications. Here, we investigate the ground state and magnetic properties of selected $4f$-atoms deposited on a graphene substrate in the framework of the DFT+$U$ approach. The inherent strong spin-orbit interaction in conjunction with crystal field effects acting on the localized $4f$-shells results in a substantial magnetic anisotropy energy (tens of meVs), whose angular dependence is dictated by the $C_{6v}$ symmetry of the graphene substrate. We obtain the crystal field parameters and investigate spin-flip events via quantum tunneling of magnetization in the view of achieving a protected quantum-spin behavior. Remarkably, the large spin and orbital moments of the open $4f$-shells (Dy, Ho and Tm) generate a strong magneto-elastic coupling which provides more flexibility to control the magnetic state via the application of external strain.
format Preprint
id arxiv_https___arxiv_org_abs_2309_15513
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Investigation of magnetic properties of $4f$-adatoms on graphene
Carbone, Johanna P.
Bouaziz, Juba
Bihlmayer, Gustav
Blügel, Stefan
Mesoscale and Nanoscale Physics
Rare-earth (RE) atoms on top of 2D materials represent an interesting platform with the prospect of tailoring the magnetic anisotropy for practical applications. Here, we investigate the ground state and magnetic properties of selected $4f$-atoms deposited on a graphene substrate in the framework of the DFT+$U$ approach. The inherent strong spin-orbit interaction in conjunction with crystal field effects acting on the localized $4f$-shells results in a substantial magnetic anisotropy energy (tens of meVs), whose angular dependence is dictated by the $C_{6v}$ symmetry of the graphene substrate. We obtain the crystal field parameters and investigate spin-flip events via quantum tunneling of magnetization in the view of achieving a protected quantum-spin behavior. Remarkably, the large spin and orbital moments of the open $4f$-shells (Dy, Ho and Tm) generate a strong magneto-elastic coupling which provides more flexibility to control the magnetic state via the application of external strain.
title Investigation of magnetic properties of $4f$-adatoms on graphene
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2309.15513