The low-energy spectra of the single-mode h circle times(G+H) linear Jahn-Teller model is studied by means of exact diagonalization. Both eigenenergies and photoemission spectral intensities are computed. These spectra are useful to understand the vibronic dynamics of icosahedral clusters with partly filled orbital quintet molecular shells, for example C-60 positive ions.

Low-energy excitations of a linearly Jahn-Teller coupled orbital quintet / N. Manini. - In: PHYSICAL REVIEW A. - ISSN 1050-2947. - 71:3(2005).

Low-energy excitations of a linearly Jahn-Teller coupled orbital quintet

N. Manini
Primo
2005

Abstract

The low-energy spectra of the single-mode h circle times(G+H) linear Jahn-Teller model is studied by means of exact diagonalization. Both eigenenergies and photoemission spectral intensities are computed. These spectra are useful to understand the vibronic dynamics of icosahedral clusters with partly filled orbital quintet molecular shells, for example C-60 positive ions.
CIRCLE-TIMES-H; POSITIVELY CHARGED FULLERENE; GROUND-STATE; BERRY PHASE; PHOTOELECTRON-SPECTRUM; DEGENERATE STATES; SYSTEMS; APPROXIMATION; SYMMETRY; EPSILON
Settore FIS/03 - Fisica della Materia
2005
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/4761
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