We find the exact semiclassical (strong coupling) zero-point energy shifts applicable to the e x (nE) and t x (nH) dynamic Jahn-Teller problems, for an arbitrary number n of discrete vibrational modes simultaneously coupled to one single electronic level. We also obtain an analytical formula for the frequency of the resulting normal modes, which has an attractive and apparently general Slater-Koster form. The Limits of validity of this approach are assessed by comparison with O'Brien's previous effective-mode approach, and with accurate numerical diagonalizations. Numerical values obtained for t x (nH) with n = 8 and coupling constants appropriate to C-60(-) are used for this purpose, and are discussed in the context of fullerene.

Exact zero-point energy shift in the e circle times(nE), t circle times(nH) many-modes dynamic Jahn-Teller systems at strong coupling / N. Manini, E. Tosatti. - In: PHYSICAL REVIEW. B, CONDENSED MATTER AND MATERIALS PHYSICS. - ISSN 1098-0121. - 58:2(1998), pp. 782-790.

Exact zero-point energy shift in the e circle times(nE), t circle times(nH) many-modes dynamic Jahn-Teller systems at strong coupling

N. Manini
Primo
;
1998

Abstract

We find the exact semiclassical (strong coupling) zero-point energy shifts applicable to the e x (nE) and t x (nH) dynamic Jahn-Teller problems, for an arbitrary number n of discrete vibrational modes simultaneously coupled to one single electronic level. We also obtain an analytical formula for the frequency of the resulting normal modes, which has an attractive and apparently general Slater-Koster form. The Limits of validity of this approach are assessed by comparison with O'Brien's previous effective-mode approach, and with accurate numerical diagonalizations. Numerical values obtained for t x (nH) with n = 8 and coupling constants appropriate to C-60(-) are used for this purpose, and are discussed in the context of fullerene.
Settore FIS/03 - Fisica della Materia
1998
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/204673
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