Magnetic nanoparticles and molecules, in particular ferromagnetic noble metal nanoparticles, molecular magnet and single-molecule magnets (SMM), are perfect examples to investigate the role of quantum mechanics at the nanoscale. For example, SMMs are known to reverse their magnetization by quantum tunneling in the absence of thermal excitation and show a number of fundamental quantum mechanical manifestations, such as quantum interference effects. On the other hand, noble metal nanoparticles are found to behave ferromagnetically for diameters below a few nanometers. Some of these manifestations are still intriguing, and novel research approaches are necessary to advance towards a more complete understanding of these exciting nanoscale syste...
In the field of molecular spintronics, the use of magnetic molecules for information technology is a...
The synthesis and study of magnetic nanostructures is of both intense scientific and technological i...
The utilisation of quantum properties can largely impact how technological devices work. Up to date,...
Magnetic nanoparticles and molecules, in particular ferromagnetic noble metal nanoparticles, molecul...
We present a preliminary study of the single-electron transport response of a Mn-4 single-molecule m...
International audienceMolecular nanomagnets, often called single-molecule Magnets, have attracted mu...
This thesis deals with single-electron tunneling in transistor-like devices in which the central ele...
Molecular magnets are ideal systems to probe the realm that borders quantum and classical physics, a...
Nanomagnetism is a rapidly expanding area of research which appears to be able to provide novel appl...
International audienceMolecular nanomagnets, often called single-molecule magnets (SMMs), have attra...
The idea of miniaturizing devices down to the nanoscale where quantum ffeffects become relevant dema...
This doctoral dissertation consists of theoretical studies of a number of nanometer-scale structures...
This thesis characterizes magnetic nanoscale systems with increasing size and aspect ratio using syn...
Three-terminal single-electron transistor devices utilizing Al/Al(2)O(3) gate electrodes were develo...
One of the fascinating fields of study in magnetism in recent years has been the study of quantum ph...
In the field of molecular spintronics, the use of magnetic molecules for information technology is a...
The synthesis and study of magnetic nanostructures is of both intense scientific and technological i...
The utilisation of quantum properties can largely impact how technological devices work. Up to date,...
Magnetic nanoparticles and molecules, in particular ferromagnetic noble metal nanoparticles, molecul...
We present a preliminary study of the single-electron transport response of a Mn-4 single-molecule m...
International audienceMolecular nanomagnets, often called single-molecule Magnets, have attracted mu...
This thesis deals with single-electron tunneling in transistor-like devices in which the central ele...
Molecular magnets are ideal systems to probe the realm that borders quantum and classical physics, a...
Nanomagnetism is a rapidly expanding area of research which appears to be able to provide novel appl...
International audienceMolecular nanomagnets, often called single-molecule magnets (SMMs), have attra...
The idea of miniaturizing devices down to the nanoscale where quantum ffeffects become relevant dema...
This doctoral dissertation consists of theoretical studies of a number of nanometer-scale structures...
This thesis characterizes magnetic nanoscale systems with increasing size and aspect ratio using syn...
Three-terminal single-electron transistor devices utilizing Al/Al(2)O(3) gate electrodes were develo...
One of the fascinating fields of study in magnetism in recent years has been the study of quantum ph...
In the field of molecular spintronics, the use of magnetic molecules for information technology is a...
The synthesis and study of magnetic nanostructures is of both intense scientific and technological i...
The utilisation of quantum properties can largely impact how technological devices work. Up to date,...