24 research outputs found
Co atoms on BiSe revealing a coverage dependent spin reorientation transition
We investigate Co nanostructures on BiSe by means of scanning
tunneling microscopy and spectroscopy [STM/STS], X-ray absorption spectroscopy
[XAS], X-ray magnetic dichroism [XMCD] and calculations using the density
functional theory [DFT]. In the single adatom regime we find two different
adsorption sites by STM. Our calculations reveal these to be the fcc and hcp
hollow sites of the substrate. STS shows a pronounced peak for only one species
of the Co adatoms indicating different electronic properties of both types.
These are explained on the basis of our DFT calculations by different
hybridizations with the substrate. Using XMCD we find a coverage dependent spin
reorientation transition from easy-plane toward out-of-plane. We suggest
clustering to be the predominant cause for this observation.Comment: 10 pages, 4 figure
Strong out-of-plane magnetic anisotropy of Fe adatoms on BiTe
The electronic and magnetic properties of individual Fe atoms adsorbed on the
surface of the topological insulator BiTe(111) are investigated.
Scanning tunneling microscopy and spectroscopy prove the existence of two
distinct types of Fe species, while our first-principles calculations assign
them to Fe adatoms in the hcp and fcc hollow sites. The combination of x-ray
magnetic circular dichroism measurements and angular dependent magnetization
curves reveals out-of-plane anisotropies for both species with anisotropy
constants of meV/atom and meV/atom. These values are well in line with the results of
calculations.Comment: 6 pages, 3 figure
Adatoms and clusters of 3d transition metals on graphene: Electronic and magnetic configurations
We investigate the electronic and magnetic properties of single Fe, Co, and
Ni atoms and clusters on monolayer graphene (MLG) on SiC(0001) by means of
scanning tunneling microscopy (STM), x-ray absorption spectroscopy, x-ray
magnetic circular dichroism (XMCD), and ab initio calculations. STM reveals
different adsorption sites for Ni and Co adatoms. XMCD proves Fe and Co adatoms
to be paramagnetic and to exhibit an out-of-plane easy axis in agreement with
theory. In contrast, we experimentally find a nonmagnetic ground state for Ni
monomers while an increasing cluster size leads to sizeable magnetic moments.
These observations are well reproduced by our calculations and reveal the
importance of hybridization effects and intra-atomic charge transfer for the
properties of adatoms and clusters on MLG.Comment: 8 pages (supplementary included), 4 figures, (supplementary included
Orbital selective coupling between ni adatoms and graphene dirac electrons
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