By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 single-molecule magnet (SMM) embedded in a three-terminal junction. In particular, we determine in situ the transverse anisotropy of the molecule from the pronounced intensity modulations of the linear conductance, which are observed as a function of applied magnetic field. The proposed technique works at temperatures exceeding the energy scale of the tunnel splittings of the SMM. We deduce that the transverse anisotropy for a single Fe4 molecule captured in a junction is substantially larger than the bulk value
We have studied three-terminal electron transport through an individual single-molecule magnet Fe4. ...
We study single-electron transport in a three-ion molecule with strong uniaxial anisotropy and in th...
We study single-electron transport in a three-ion molecule with strong uniaxial anisotropy and in th...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe-4 ...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We have measured quantum transport through an individual Fe4 single-molecule magnet embedded in a th...
We have measured quantum transport through an individual Fe4 single-molecule magnet embedded in a th...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We have studied three-terminal electron transport through an individual single-molecule magnet Fe4. ...
We have studied three-terminal electron transport through an individual single-molecule magnet Fe4. ...
We study single-electron transport in a three-ion molecule with strong uniaxial anisotropy and in th...
We study single-electron transport in a three-ion molecule with strong uniaxial anisotropy and in th...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe-4 ...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
By means of electronic transport, we study the transverse magnetic anisotropy of an individual Fe4 s...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We have measured quantum transport through an individual Fe4 single-molecule magnet embedded in a th...
We have measured quantum transport through an individual Fe4 single-molecule magnet embedded in a th...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We study three-terminal charge transport through individual Fe4 single-molecule magnets. Magnetic an...
We have studied three-terminal electron transport through an individual single-molecule magnet Fe4. ...
We have studied three-terminal electron transport through an individual single-molecule magnet Fe4. ...
We study single-electron transport in a three-ion molecule with strong uniaxial anisotropy and in th...
We study single-electron transport in a three-ion molecule with strong uniaxial anisotropy and in th...