A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic change of the magnetization in time-dependent magnetic fields. The effects of the Dzyaloshinskii-Moriya interaction, the most plausible source for the energy-level repulsions that lead to adiabatic changes of the magnetization, are studied in detail. We find that the energy-level repulsions that result from this interaction exhibit a strong dependence on the direction of the applied field. We also discuss the role of magnetic anisotropy in the molecule Mn-12-acetate.</p
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
Abstract: Dzyaloshinskii–Moriya interaction, DMI in short, represents an antisymmetric type of magne...
We have developed a fully microscopic theory of magnetic properties of the prototype molecular magne...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
A microscopic model of the molecular magnet V15 is used to study mechanisms for the adiabatic change...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
Single molecule magnets (SMMs), such as Mn12-acetate, are composed of transition metal ions and cons...
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
Abstract: Dzyaloshinskii–Moriya interaction, DMI in short, represents an antisymmetric type of magne...
We have developed a fully microscopic theory of magnetic properties of the prototype molecular magne...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
A microscopic model of the molecular magnet V15 is used to study mechanisms for the adiabatic change...
A microscopic model of the molecular magnet V-15 is used to study mechanisms for the adiabatic chang...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
The magnetic energy-level diagrams for models of the Mn-12 and V-15 molecule are calculated using th...
Single molecule magnets (SMMs), such as Mn12-acetate, are composed of transition metal ions and cons...
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
In this thesis, I will present an experimental study of two single molecule magnets, Mn12-ac and Mn1...
Abstract: Dzyaloshinskii–Moriya interaction, DMI in short, represents an antisymmetric type of magne...
We have developed a fully microscopic theory of magnetic properties of the prototype molecular magne...