Electron paramagnetic resonance (EPR) can provide unique insight into the chemical structure and magnetic properties of dopants in oxide and semiconducting materials that are of interest for applications in electronics, catalysis, and quantum sensing. Here, we demonstrate that EPR in combination with scanning tunneling microscopy (STM) allows for probing the bonding and charge state of alkali metal atoms on an ultrathin magnesium oxide layer on a Ag substrate. We observe a magnetic moment of 1 μB for Li2, LiNa, and Na2 dimers corresponding to spin radicals with a charge state of +1e. Single alkali atoms have the same charge state and no magnetic moment. The ionization of the adsorbates is attributed to charge transfer through the oxide to t...
The adsorption of molecular oxygen ~enriched with 17O) onto high surface area MgO has been studied ...
In the present Letter the first electron paramagnetic resonance spectra of single metal atoms on a s...
© 2015, Springer-Verlag Wien. This article reviews recent electron paramagnetic resonance (EPR) stud...
Electron paramagnetic resonance (EPR) can provide unique insight into the chemical structure and mag...
© 2021 American Physical Society.We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO us...
Lanthanide atoms on surfaces are an exceptional platform for atomic-scale magnetic information stora...
Even in the gas phase single atoms possess catalytic properties, which can be crucially enhanced and...
Spin resonance provides the high-energy resolution needed to determine biological and material struc...
At the atomic scale, surfaces exhibit a rich variety of physical phenomena that can be probed using ...
Spin resonance provides the high-energy resolution needed to determine biological and material struc...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
Sensing magnetic interactions at the atomic scale and utilizing those interactions for magnetometry ...
Atomic scale engineering of magnetic fields is a key ingredient for miniaturizing quantum devices an...
Mn2+ ion doping is used as an electron paramagnetic resonance (EPR) probe to investigate the influen...
The electron spin resonance (ESR or EPR) is a spectroscopic technique particularly suited to investi...
The adsorption of molecular oxygen ~enriched with 17O) onto high surface area MgO has been studied ...
In the present Letter the first electron paramagnetic resonance spectra of single metal atoms on a s...
© 2015, Springer-Verlag Wien. This article reviews recent electron paramagnetic resonance (EPR) stud...
Electron paramagnetic resonance (EPR) can provide unique insight into the chemical structure and mag...
© 2021 American Physical Society.We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO us...
Lanthanide atoms on surfaces are an exceptional platform for atomic-scale magnetic information stora...
Even in the gas phase single atoms possess catalytic properties, which can be crucially enhanced and...
Spin resonance provides the high-energy resolution needed to determine biological and material struc...
At the atomic scale, surfaces exhibit a rich variety of physical phenomena that can be probed using ...
Spin resonance provides the high-energy resolution needed to determine biological and material struc...
Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magn...
Sensing magnetic interactions at the atomic scale and utilizing those interactions for magnetometry ...
Atomic scale engineering of magnetic fields is a key ingredient for miniaturizing quantum devices an...
Mn2+ ion doping is used as an electron paramagnetic resonance (EPR) probe to investigate the influen...
The electron spin resonance (ESR or EPR) is a spectroscopic technique particularly suited to investi...
The adsorption of molecular oxygen ~enriched with 17O) onto high surface area MgO has been studied ...
In the present Letter the first electron paramagnetic resonance spectra of single metal atoms on a s...
© 2015, Springer-Verlag Wien. This article reviews recent electron paramagnetic resonance (EPR) stud...