Title of article
Spin–vibronic superexchange and dynamical vibronic order in ammoniated cubic fullerides
Author/Authors
Chibotaru، نويسنده , , L.F.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
7
From page
53
To page
59
Abstract
In the Mott–Hubbard cubic fulleride Li3(NH3)6C60 the superexchange energy is found to be much smaller than the rotational quantum for Jahn–Teller deformations at fullerene sites. This gives rise to a new type of superexchange interaction involving threefold degenerate vibronic ground states of C 60 3 - ions. Comparison of the spin–vibronic spectrum for a dimer fragment [ C 60 3 - ] 2 of a b.c.c. lattice with the spin–orbital spectrum of a corresponding dimer containing threefold orbitally degenerate sites ( t 2 g 1 - t 2 g 1 model) exhibits drastic differences. In contrast to spin–orbital models, the spin–vibronic superexchange can only be antiferromagnetic and shows significant vibronic reduction of superexchange amplitude in agreement with magnetic susceptibility data. In function of transfer parameters two quadrupolar fully dynamical vibronic orders with quenched vibronic moments on sites develop in the ground state. The spectrum of collective vibronic excitations is calculated and the stability of vibronic ordered phases is discussed.
Keywords
Dynamical Jahn–Teller effect , Superexchange interaction , Mott–Hubbard fullerides
Journal title
Journal of Molecular Structure
Serial Year
2007
Journal title
Journal of Molecular Structure
Record number
1963975
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