We study electron molecules in realistic vertically coupled quantum dots in a strong magnetic field. Computing the energy spectrum, pair correlation functions, and dynamical form factor as a function of inter-dot coupling via diagonalization of the many-body Hamiltonian, we identify structural transitions between different phases, some of which do not have a classical counterpart. The calculated Raman cross-section shows how such phases can be experimentally singled out
We calculate the dynamical structure factor S(Q,\u3c9) for correlated electrons in quantum dots in a...
We investigate the phase diagram of realistic vertically coupled quantum dots under a magnetic field...
It is theoretically shown, within the local spin-density-functional theory framework, that inhomogen...
We study electron molecules in realistic vertically coupled quantum dots in a strong magnetic field....
We study electron molecules in realistic vertically coupled quantum dots in a strong magnetic field....
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
In this Thesis, I present a theoretical study of correlation effects in strongly interacting electro...
Coupled semiconductor quantum dots form artificial molecules where relevant energy scales controllin...
We perform Hartree-Fock calculations to show that quantum dots (i.e., two-dimensional systems of up ...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We study the magnetic field induced singlet/triplet transition for two electrons in vertically-coupl...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We study coupled semiconductor quantum dots theoretically through a generalized Hubbard approach, wh...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We calculate the dynamical structure factor S(Q,\u3c9) for correlated electrons in quantum dots in a...
We investigate the phase diagram of realistic vertically coupled quantum dots under a magnetic field...
It is theoretically shown, within the local spin-density-functional theory framework, that inhomogen...
We study electron molecules in realistic vertically coupled quantum dots in a strong magnetic field....
We study electron molecules in realistic vertically coupled quantum dots in a strong magnetic field....
We investigate the stability of few-electron quantum phases in vertically coupled quantum dots under...
In this Thesis, I present a theoretical study of correlation effects in strongly interacting electro...
Coupled semiconductor quantum dots form artificial molecules where relevant energy scales controllin...
We perform Hartree-Fock calculations to show that quantum dots (i.e., two-dimensional systems of up ...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We study the magnetic field induced singlet/triplet transition for two electrons in vertically-coupl...
We present excitation energy spectra of few-electron vertically coupled quantum dots for strong and ...
We study coupled semiconductor quantum dots theoretically through a generalized Hubbard approach, wh...
Electron correlations in a two-electron two-dimensional ‘artificial atom’ or quantum dot (with harmo...
Integer filling factor phases of many-electron vertically coupled diatomic artificial quantum dot mo...
We calculate the dynamical structure factor S(Q,\u3c9) for correlated electrons in quantum dots in a...
We investigate the phase diagram of realistic vertically coupled quantum dots under a magnetic field...
It is theoretically shown, within the local spin-density-functional theory framework, that inhomogen...