We have studied a two-electron quantum dot molecule in a magnetic field. The electron interaction is treated accurately by the direct diagonalization of the Hamiltonian matrix. We calculate two lowest energy levels of the two-electron quantum dot molecule in a magnetic field. Our results show that the electron interactions are significant, as they can change the total spin of the two-electron ground state of the system by adjusting the magnetic field between S = 0 and S = 1. The energy difference DeltaE between the lowest S = 0 and S = 1 states is shown as a function of the axial magnetic field. We found that the energy difference between the lowest S = 0 and S = 1 states in the strong-B S = 0 state varies linearly. Our results provide a po...
The ground states of N-electron parabolic quantum dots in the presence of a perpendicular magnetic f...
We consider a system of few electrons trapped in a two-dimensional circularquantum dot with harmonic...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Exact solutions of the eigenstates of two-interacting electron quantum dot nanostructures in an exte...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We have studied the single-electron and two-electron vertically assembled quantum disks in an axial ...
We have studied the single-electron and two-electron vertically-assembled quantum disks in an axial ...
[eng] Quantum entanglement is analyzed thoroughly in the case of the ground and lowest states of two...
Semiconductor quantum dots have been studied for nearly two decades with a variety of experimental a...
Laterally coupled quantum dot molecules are studied using exact diagonalization techniques. We exami...
The low-energy eigenstates of two interacting electrons in a square quantum dot in a magnetic field ...
The ground states of a few electrons confined in two vertically coupled quantum rings in the presenc...
We study a two-electron quantum dot molecule in a magnetic field by the direct diagonalization of th...
We investigate the phase diagram of realistic vertically coupled quantum dots under a magnetic field...
The ground states of N-electron parabolic quantum dots in the presence of a perpendicular magnetic f...
We consider a system of few electrons trapped in a two-dimensional circularquantum dot with harmonic...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...
Exact solutions of the eigenstates of two-interacting electron quantum dot nanostructures in an exte...
We study the magnetic coupling in artificial molecules composed of two and four laterally coupled q...
We theoretically investigate the mechanisms for the magnetic field-induced singlet-triplet transitio...
We have studied the single-electron and two-electron vertically assembled quantum disks in an axial ...
We have studied the single-electron and two-electron vertically-assembled quantum disks in an axial ...
[eng] Quantum entanglement is analyzed thoroughly in the case of the ground and lowest states of two...
Semiconductor quantum dots have been studied for nearly two decades with a variety of experimental a...
Laterally coupled quantum dot molecules are studied using exact diagonalization techniques. We exami...
The low-energy eigenstates of two interacting electrons in a square quantum dot in a magnetic field ...
The ground states of a few electrons confined in two vertically coupled quantum rings in the presenc...
We study a two-electron quantum dot molecule in a magnetic field by the direct diagonalization of th...
We investigate the phase diagram of realistic vertically coupled quantum dots under a magnetic field...
The ground states of N-electron parabolic quantum dots in the presence of a perpendicular magnetic f...
We consider a system of few electrons trapped in a two-dimensional circularquantum dot with harmonic...
Semiconductor quantum dots represent nanoscale systems with few electrons confined in a semiconducto...