We address the problem of electronic and nuclear spin resonance of an individual atom on a surface driven by a scanning tunneling microscope. Several mechanisms have been proposed so far, some of them based on the modulation of exchange and crystal field associated with a piezoelectric displacement of the adatom driven by the radio frequency (RF) tip electric field. Here we consider another mechanism, where the piezoelectric displacement modulates the g-factor anisotropy, leading both to electronic and nuclear spin flip transitions. We discuss thoroughly the cases of hydrogenated Ti (S=1/2) and Fe (S=2) on MgO, relevant for recent experiments. We model the system using two approaches. First, an analytical model that includes crystal field, ...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
The pathway toward the tailored synthesis of materials starts with precise characterization of the c...
We address the problem of electronic and nuclear spin resonance of an individual atom on a surface d...
© 2021 American Physical Society.We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO us...
Coherent control of individual atomic and molecular spins on surfaces has recently been demonstrated...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO using scanning tunneling microscopy...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We present a theoretical framework to describe experiments directed to controlling single-atom spin ...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
The pathway toward the tailored synthesis of materials starts with precise characterization of the c...
We address the problem of electronic and nuclear spin resonance of an individual atom on a surface d...
© 2021 American Physical Society.We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO us...
Coherent control of individual atomic and molecular spins on surfaces has recently been demonstrated...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO using scanning tunneling microscopy...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
We propose a universal mechanism that makes it possible to drive an individual atomic spin using a s...
We present a theoretical framework to describe experiments directed to controlling single-atom spin ...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
The pathway toward the tailored synthesis of materials starts with precise characterization of the c...