Structural transitions in a classical two-dimensional molecule system

The ground state of a classical two-dimensional (2D) system with a finite number of charge particles, trapped by two positive impurity charges localized at a distance ( z 0) from the 2D plane and separated from each other by a distance x p are obtained. The impurities are allowed to carry more than...

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Veröffentlicht in:Solid state communications 2002-06, Vol.122 (12), p.665-669
Hauptverfasser: Ferreira, W.P, Farias, G.A, Carmona, H.A, Peeters, F.M
Format: Artikel
Sprache:eng
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Zusammenfassung:The ground state of a classical two-dimensional (2D) system with a finite number of charge particles, trapped by two positive impurity charges localized at a distance ( z 0) from the 2D plane and separated from each other by a distance x p are obtained. The impurities are allowed to carry more than one positive charge. This classical system can form a 2D-like classical molecule that exhibits structural transitions and spontaneous symmetry breaking as function of the separation between the positive charges before it transforms into two 2D-like classical atoms. We also observe structural transitions as a function of the dielectric constant of the substrate which supports the charged particles, in addition to broken symmetry states and unbinding of particles.
ISSN:0038-1098
1879-2766
DOI:10.1016/S0038-1098(02)00157-6