INVESTIGADORES
SANCHEZ Maria Jose
artículos
Título:
Interaction-induced chaos in a two-electron quantum-dot system
Autor/es:
A. J. FENDRIK, M. J. SÁNCHEZ AND P. I. TAMBORENEA. PHYS. REV. B 63 , 115313 (2001).
Revista:
PHYSICAL REVIEW B - CONDENSED MATTER AND MATERIALS PHYSICS
Referencias:
Año: 2001 vol. 63 p. 115313 - 1153134
ISSN:
0163-1829
Resumen:
A quasi-one-dimensional quantum dot containing two interacting electrons is analyzed in search of signatures of chaos. The two-electron energy spectrum is obtained by diagonalization of the Hamiltonian including the exact Coulomb interaction. We find that the level-spacing fluctuations closely follow a Wigner-Dyson distribution, which indicates the emergence of quantum signatures of chaos due to the Coulomb interaction in an otherwise nonchaotic system. In general, the Poincare´ maps of a classical analog of this quantummechanical problem can exhibit a mixed classical dynamics. However, for the range of energies involved in the present system, the dynamics is strongly chaotic, aside from small regular regions. The system we study models a realistic semiconductor nanostructure, with electronic parameters typical of gallium arsenide.