Individual nuclear spin states can have very long lifetimes and could be useful as qubits. Progress in this direction was achieved on MgO/Ag(001) via detection of the hyperfine interaction (HFI) of Fe, Ti and Cu adatoms using scanning tunneling microscopy (STM). Previously, we systematically quantified from first-principles the HFI for the whole series of 3d transition adatoms (Sc-Cu) deposited on various ultra-thin insulators, establishing the trends of the computed HFI with respect to the filling of the magnetic s- and d-orbitals of the adatoms and on the bonding with the substrate. Here we explore the case of dimers by investigating the correlation between the HFI and the magnetic state of free standing Fe dimers, single Fe adatoms and d...
Single atom magnets offer the possibility of magnetic information storage in the most fundamental un...
Single atom magnets offer the possibility of magnetic information storage in the most fundamental un...
This thesis investigates the magnetic properties of single atoms and dimers adsorbed on graphene and...
Individual nuclear spin states can have very long lifetimes and could be useful as qubits. Progress ...
Abstract Nuclear spins are among the potential candidates prospected for quantum information technol...
Groundbreaking advances in quantum technologies have recently been achieved through the use of innov...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
We report on the magnetic properties of HoCo dimers as a model system for the smallest intermetallic...
We report on the magnetic properties of HoCo dimers as a model system for the smallest intermetallic...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
As an extension of two-level quantum bits (qubits), multilevel systems, so-called qu<i>d</i>its, whe...
The hyperfine properties of Fe57m in the diatomic iron molecule have been analyzed using the self-co...
International audienceSpin-orbit coupling (SOC) related to the minority interface resonance states (...
The magnetic quantum states of holmium single atom magnets on MgO(100) have proven extremely robust ...
Single atom magnets offer the possibility of magnetic information storage in the most fundamental un...
Single atom magnets offer the possibility of magnetic information storage in the most fundamental un...
This thesis investigates the magnetic properties of single atoms and dimers adsorbed on graphene and...
Individual nuclear spin states can have very long lifetimes and could be useful as qubits. Progress ...
Abstract Nuclear spins are among the potential candidates prospected for quantum information technol...
Groundbreaking advances in quantum technologies have recently been achieved through the use of innov...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
We report on the magnetic properties of HoCo dimers as a model system for the smallest intermetallic...
We report on the magnetic properties of HoCo dimers as a model system for the smallest intermetallic...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
As an extension of two-level quantum bits (qubits), multilevel systems, so-called qu<i>d</i>its, whe...
The hyperfine properties of Fe57m in the diatomic iron molecule have been analyzed using the self-co...
International audienceSpin-orbit coupling (SOC) related to the minority interface resonance states (...
The magnetic quantum states of holmium single atom magnets on MgO(100) have proven extremely robust ...
Single atom magnets offer the possibility of magnetic information storage in the most fundamental un...
Single atom magnets offer the possibility of magnetic information storage in the most fundamental un...
This thesis investigates the magnetic properties of single atoms and dimers adsorbed on graphene and...