We developed a magneto optical device able to measure in situ the evolution of magnetization of nanostructures of Co on Au(111) electrodeposited. It contains an electrochemical cell with a continuous circulation system wich gives the possibility to change the type of solution to make multilayers deposition. The acquisition's frequency of M/H cycle is 2 Hz. We utilized and analyzed quantitatively the results of observation's work made by STM in situ on the morphological aspect of deposition of Co as a function of deposition potential in the range [-1.6V/MSE – 1.26 V/MSE]. Growth mode of Co is first a bilayer and then a layer by layer. During the formation of the bilayer islands density increases when the potential is more negative. Then the ...
Ultrathin Co-films on Au(111) exhibit an easy axis of magnetization perpendicular to the film plane ...
The possibility of magnetic anisotropy engineering of ultrathin Co films in the scale of several doz...
Ultrathin layers of ferromagnetic materials exhibit extraordinary magnetic properties which can also...
We developed a magneto optical device able to measure in situ the evolution of magnetization of nano...
This work investigates the nucleation and electrochemical growth of ultrathin magnetic films (co, ni...
CE TRAVAIL ETUDIE LA NUCLEATION ET LA CROISSANCE ELECTROCHIMIQUE DE FILMS MAGNETIQUES ULTRAMINCES (C...
The experimental study of nanostructures is one field of great interest in actual solid state physic...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We have deposited thin layers of Co on a semiconductor substrate Si(111), by electrochemical method,...
We have studied in this Ph.D work the structural and magnetic properties of CoxPt1-x nanoparticles e...
J. Friedel (président), G. Bayreuther (rapporteur), F. Gautier (rapporteur), J.B. Theeten (examinate...
The crystallographic structure and morphology of electrodeposited cobalt films on Au(111) is found ...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
Abstract :Magnetic nanostructures can have properties very different from those of bulk materials. O...
This work reports on the exchange anisotropy in cobalt and nickel-copper nanoclusters (4-5 nm) depos...
Ultrathin Co-films on Au(111) exhibit an easy axis of magnetization perpendicular to the film plane ...
The possibility of magnetic anisotropy engineering of ultrathin Co films in the scale of several doz...
Ultrathin layers of ferromagnetic materials exhibit extraordinary magnetic properties which can also...
We developed a magneto optical device able to measure in situ the evolution of magnetization of nano...
This work investigates the nucleation and electrochemical growth of ultrathin magnetic films (co, ni...
CE TRAVAIL ETUDIE LA NUCLEATION ET LA CROISSANCE ELECTROCHIMIQUE DE FILMS MAGNETIQUES ULTRAMINCES (C...
The experimental study of nanostructures is one field of great interest in actual solid state physic...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
We have deposited thin layers of Co on a semiconductor substrate Si(111), by electrochemical method,...
We have studied in this Ph.D work the structural and magnetic properties of CoxPt1-x nanoparticles e...
J. Friedel (président), G. Bayreuther (rapporteur), F. Gautier (rapporteur), J.B. Theeten (examinate...
The crystallographic structure and morphology of electrodeposited cobalt films on Au(111) is found ...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
Abstract :Magnetic nanostructures can have properties very different from those of bulk materials. O...
This work reports on the exchange anisotropy in cobalt and nickel-copper nanoclusters (4-5 nm) depos...
Ultrathin Co-films on Au(111) exhibit an easy axis of magnetization perpendicular to the film plane ...
The possibility of magnetic anisotropy engineering of ultrathin Co films in the scale of several doz...
Ultrathin layers of ferromagnetic materials exhibit extraordinary magnetic properties which can also...