Ep. Pokatilov et al., Electron states in rectangular quantum well wires (single wires, finite and infinite lattices), J PHYS-COND, 12(42), 2000, pp. 9037-9052
Electron and hole states are studied in quantum well wires (QWWs) with a re
ctangular cross section. A theoretical approach is developed, within which
the electronic properties of a single QWW as well as of finite and infinite
planar lattices of QWWs are analysed. It is demonstrated that the ratio of
effective masses in the well and in the barrier influences the dispersion
law of the electron motion along the QWW axis. A six-wire lattice is studie
d in detail. Edge states, which can be observed in optical spectra, are rev
ealed, when the barrier heights are different inside and outside the lattic
e. The miniband structure is investigated for an infinite lattice of QWWs.
The evolution of electron states is analysed when the number of QWWs in the
lattice increases: 1 --> 6 --> infinity. The calculated electron-hole pair
energies are in a good agreement with the experimental data on photolumine
scence in the Ga0.47In0.53As/InP QWW.