The two-dimensional circular quantum dot in a double semiconductor heterostructure is simulated by a new axially symmetric smooth potential of finite depth and width. The presence of additional potential parameters in this model allows us to describe the individual properties of different kinds of quantum dots. The influence of the Rashba and Dresselhaus spin-orbit interactions on electron states in quantum dot is investigated. The total Hamiltonian of the problem is written as a sum of unperturbed part and perturbation. First, the exact solution of the unperturbed Schrödinger equation was constructed. Each energy level of the unperturbed Hamiltonian was doubly degenerated. Further, the analytical approximate expression for energy sp...
We performed a quantum Monte Carlo study of a quasi-two-dimensional quantum dot built on a semicondu...
This thesis describes a series of experiments aimed at understanding and controlling the behavior of...
The energy spectrum of electron and hole is investigated in a complicated nanoheterosystem consistin...
The two-dimensional circular quantum dot in a double semiconductor heterostructure is simulated by a...
The confinement model potential for quantum dot considered in the present paper is smooth, has finit...
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
Spin-orbit effects in single electron states in laterally coupled quantum dots in the presence of a...
Using the method of breaking circular symmetry and the subsequent symmetry restoration via projectio...
Solutions of the Schrödinger equation are obtained for an electron in a two-dimensional circular sem...
Single electron confined in a quantum dot is studied. A special emphasis is laid on the spin propert...
The influence of the spin-orbit interactions on the energy spectrum of two-electron laterally couple...
The goal of this project is to study electron correlation in a confined geometry (quantum dots) with...
Quantum dots, also known as artificial atoms, are created by tightly confining electrons, and thereb...
© 2018 Author(s). The interaction between electrons in arrays of electrostatically defined quantum d...
The energy spectrum of electron is investigated in complicated nanoheterosystem consisting of two cy...
We performed a quantum Monte Carlo study of a quasi-two-dimensional quantum dot built on a semicondu...
This thesis describes a series of experiments aimed at understanding and controlling the behavior of...
The energy spectrum of electron and hole is investigated in a complicated nanoheterosystem consistin...
The two-dimensional circular quantum dot in a double semiconductor heterostructure is simulated by a...
The confinement model potential for quantum dot considered in the present paper is smooth, has finit...
In semiconductor quantum dots, the motion of the electrons is restricted to a finite region of a two...
Spin-orbit effects in single electron states in laterally coupled quantum dots in the presence of a...
Using the method of breaking circular symmetry and the subsequent symmetry restoration via projectio...
Solutions of the Schrödinger equation are obtained for an electron in a two-dimensional circular sem...
Single electron confined in a quantum dot is studied. A special emphasis is laid on the spin propert...
The influence of the spin-orbit interactions on the energy spectrum of two-electron laterally couple...
The goal of this project is to study electron correlation in a confined geometry (quantum dots) with...
Quantum dots, also known as artificial atoms, are created by tightly confining electrons, and thereb...
© 2018 Author(s). The interaction between electrons in arrays of electrostatically defined quantum d...
The energy spectrum of electron is investigated in complicated nanoheterosystem consisting of two cy...
We performed a quantum Monte Carlo study of a quasi-two-dimensional quantum dot built on a semicondu...
This thesis describes a series of experiments aimed at understanding and controlling the behavior of...
The energy spectrum of electron and hole is investigated in a complicated nanoheterosystem consistin...