The transition bridge between zero-dimensional quantum dots and one-dimensional quantum wires is explored theoretically by means of the construction of the addition energy spectra of nanorods with different lengths. Spin density-functional theory supplemented with full configuration interaction calculations are carried out. The addition energy spectra are qualitatively related to the single particle correlation diagram. The transition from charge-density waves to spin-density waves, characterizing the Wigner crystallization in the low density limit is show
We employ the density functional Kohn-Sham method in the local spin-density approximation to study t...
Recent progress in experimental studies of low-dimensional systems with strong spin-orbit coupling p...
This thesis explores crystal-phase engineering of nanowires to fabricate advanced quantum structures...
The transition bridge between zero-dimensional quantum dots and one-dimensional quantum wires is exp...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Dimensionality is an important factor to govern the electronic structures of semiconductor nanocryst...
We study the Wigner crystallization in semiconductor quantum wires within the density functional app...
The properties of quasi-two-dimensional semiconductor quantum dots are reviewed. Experimental techni...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We study the Wigner crystallization in semiconductor quantum wires within the density-functional app...
Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computati...
We employ the density functional Kohn-Sham method in the local spin-density approximation to study t...
Recent progress in experimental studies of low-dimensional systems with strong spin-orbit coupling p...
This thesis explores crystal-phase engineering of nanowires to fabricate advanced quantum structures...
The transition bridge between zero-dimensional quantum dots and one-dimensional quantum wires is exp...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Catalyst-assisted growth of semiconductor nanowires has opened up several new and exciting possibili...
Dimensionality is an important factor to govern the electronic structures of semiconductor nanocryst...
We study the Wigner crystallization in semiconductor quantum wires within the density functional app...
The properties of quasi-two-dimensional semiconductor quantum dots are reviewed. Experimental techni...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We show that the addition spectra of semiconductor quantum dots in the presence of magnetic field ca...
We study the Wigner crystallization in semiconductor quantum wires within the density-functional app...
Quantum Wells, Wires and Dots provides all the essential information, both theoretical and computati...
We employ the density functional Kohn-Sham method in the local spin-density approximation to study t...
Recent progress in experimental studies of low-dimensional systems with strong spin-orbit coupling p...
This thesis explores crystal-phase engineering of nanowires to fabricate advanced quantum structures...