We propose that the observed spin relaxation in bilayer graphene is due to resonant scattering by magnetic impurities. We analyze a resonant scattering model due to adatoms on both dimer and nondimer sites, finding that only the former give narrow resonances at the charge neutrality point. Opposite to single-layer graphene, the measured spin-relaxation rate in the graphene bilayer increases with carrier density. Although it has been commonly argued that a different mechanism must be at play for the two structures, our model explains this behavior rather naturally in terms of different broadening scales for the same underlying resonant processes. Not only do our results—using robust and first-principles inspired parameters—agree with experim...
Adatom-decorated graphene offers a promising new path towards spintronics in the ultrathin limit. W...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Bilayer graphene has two nonequivalent sublattices and, therefore, the same adatom impurity can mani...
We propose that the observed spin relaxation in bilayer graphene is due to resonant scattering by ma...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We present a joint experiment-theory study on the role of fluorine adatoms in spin and momentum scat...
We give a tutorial account of our recently proposed mechanism for spin relaxation based on spin-flip...
Graphene is an attractive material for spintronics due to theoretical predictions of long spin lifet...
We report on the first systematic study of spin transport in bilayer graphene (BLG) as a function of...
We study the spin relaxation of charge carriers in graphene in the presence of spin-polarized charge...
We study theoretically the relaxation of quasi-particle spins in graphene in proximity to an s-wave ...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
AbstractThe NMR relaxation rate is studied on the magnetic states of an impurity in bilayer graphene...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
The effect of electron-impurity scattering on momentum and spin relaxation times in graphene is stud...
Adatom-decorated graphene offers a promising new path towards spintronics in the ultrathin limit. W...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Bilayer graphene has two nonequivalent sublattices and, therefore, the same adatom impurity can mani...
We propose that the observed spin relaxation in bilayer graphene is due to resonant scattering by ma...
We propose that the observed small (100 ps) spin relaxation time in graphene is due to resonant scat...
We present a joint experiment-theory study on the role of fluorine adatoms in spin and momentum scat...
We give a tutorial account of our recently proposed mechanism for spin relaxation based on spin-flip...
Graphene is an attractive material for spintronics due to theoretical predictions of long spin lifet...
We report on the first systematic study of spin transport in bilayer graphene (BLG) as a function of...
We study the spin relaxation of charge carriers in graphene in the presence of spin-polarized charge...
We study theoretically the relaxation of quasi-particle spins in graphene in proximity to an s-wave ...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
AbstractThe NMR relaxation rate is studied on the magnetic states of an impurity in bilayer graphene...
We report on spin transport features which are unique to high quality bilayer graphene, in the absen...
The effect of electron-impurity scattering on momentum and spin relaxation times in graphene is stud...
Adatom-decorated graphene offers a promising new path towards spintronics in the ultrathin limit. W...
We present a unified theoretical framework for the study of spin dynamics and relativistic transport...
Bilayer graphene has two nonequivalent sublattices and, therefore, the same adatom impurity can mani...