Motivated by recent experimental and theoretical developments, we investigate the influence of embedded quantum dot (EQD) of different geometries (lens, ring and pyramidal) in a double barrier heterostructure (DBH). We work with a general theory of quantum transport that accounts the tight-binding model for the spin dependent resonant tunneling in a semiconductor nanostructure, and Rashba spin orbital to study the spin orbit coupling. In this context, we use the second quantization theory for Rashba effect and the standard Green functions method. We calculate the current density as a function of the voltage without and in the presence of quantum dots. In the second case, we considered the size and shape of the quantum dot, and in the two ca...
Quantum dots, also known as artificial atoms, are created by tightly confining electrons, and thereb...
In this paper we describe the science of electron transport through nanostructured schemas. We descr...
The study of spin transport has emerged at the forefront of condensed matter physics during the last...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
This thesis presents research that contributes to the understanding of fundamental properties of ele...
We review the orthodox theory of single charge tunneling in a semiconductor quantum dot and we exten...
We investigate theoretically how the spin-orbit Dresselhaus and Rashba effects influence the electro...
There have been intense research efforts over the last years focused on understanding the Rashba spi...
We present a theoretical study of the spin-dependent conductance spectra in a FM/semiconductor quant...
Over the past 35 years, much effort has gone into the development of semiconductor nanostructures. A...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
In this thesis, electron transport in mesoscopic semiconductor nanostructures, in particular so-call...
We investigate coherent electron transport through a parallel circuit of two quantum dots (QDs), eac...
We report on a general theory for analyzing quantum transport through devices in the metal-QD-metal ...
Quantum dots, also known as artificial atoms, are created by tightly confining electrons, and thereb...
In this paper we describe the science of electron transport through nanostructured schemas. We descr...
The study of spin transport has emerged at the forefront of condensed matter physics during the last...
Systems of confined electrons are found everywhere in nature in the form of atoms where the orbiting...
This thesis presents research that contributes to the understanding of fundamental properties of ele...
We review the orthodox theory of single charge tunneling in a semiconductor quantum dot and we exten...
We investigate theoretically how the spin-orbit Dresselhaus and Rashba effects influence the electro...
There have been intense research efforts over the last years focused on understanding the Rashba spi...
We present a theoretical study of the spin-dependent conductance spectra in a FM/semiconductor quant...
Over the past 35 years, much effort has gone into the development of semiconductor nanostructures. A...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
In this thesis, electron transport in mesoscopic semiconductor nanostructures, in particular so-call...
We investigate coherent electron transport through a parallel circuit of two quantum dots (QDs), eac...
We report on a general theory for analyzing quantum transport through devices in the metal-QD-metal ...
Quantum dots, also known as artificial atoms, are created by tightly confining electrons, and thereb...
In this paper we describe the science of electron transport through nanostructured schemas. We descr...
The study of spin transport has emerged at the forefront of condensed matter physics during the last...