The aim of this thesis is to understand the mutual influence between electronic transport and magnetization dynamics in magnetic hybrid metallic nanostructures. At firs, we have developed a theoretical model, based on random matrix theory, to desribe at microscopic level spin dependent transport in a heterogeneus nanostructure. This model, called Continuous Random Matrix Theory (CRMT), has been implemented in a simulation code that allows one to compute local (spin torque, spin accumulation and spin current) and macroscopic (resistance) transport properties of spin valves. To validate this model, we have compared it with a quantum theory of transport based on the non equilibrium Green's functions formalism. Coupling the two models has allow...
Nikolic, BranislavCurrent and future technological needs increasingly motivate the intensive scienti...
University of Minnesota Ph.D dissertation. November 2010. Major:Physics. Advisor: Randall H. Victora...
The aim of this thesis is to understand the influence of a DC current flowing through a spin-valve d...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
This thesis investigated magnetization dynamics in nanostructures. Magnetization can be considered a...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
We present a simple and fast method to simulate spin-torque driven magnetization dynamics in nanopil...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
In this text we present a detailed analysis of the magnetization dynamics in nano-structures when su...
This thesis advances the theory of quantum and semiclassical transport in magnetic heterostructures....
Nikolic, BranislavCurrent and future technological needs increasingly motivate the intensive scienti...
University of Minnesota Ph.D dissertation. November 2010. Major:Physics. Advisor: Randall H. Victora...
The aim of this thesis is to understand the influence of a DC current flowing through a spin-valve d...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
This thesis investigated magnetization dynamics in nanostructures. Magnetization can be considered a...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
In this thesis we study the diffusive transport of the charge, spin and heat in metallic structures ...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
We present a simple and fast method to simulate spin-torque driven magnetization dynamics in nanopil...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
In this PhD thesis, we are interested in the modeling and the simulation of innovative electronic na...
In this text we present a detailed analysis of the magnetization dynamics in nano-structures when su...
This thesis advances the theory of quantum and semiclassical transport in magnetic heterostructures....
Nikolic, BranislavCurrent and future technological needs increasingly motivate the intensive scienti...
University of Minnesota Ph.D dissertation. November 2010. Major:Physics. Advisor: Randall H. Victora...
The aim of this thesis is to understand the influence of a DC current flowing through a spin-valve d...