Title of article :
The Jahn-Teller and Barnett effects Original Research Article
Author/Authors :
Mark J. Riley and Barry J. Wood، نويسنده , , Alan Furlan، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 1996
Pages :
12
From page :
389
To page :
400
Abstract :
In the usual formulation of the Jahn-Teller effect a simplification is made in going from the adiabatic to the crude adiabatic approximation in which the electronic parts of the vibronic wavefunction are assumed independent of the nuclear coordinates. This then neglects momentum coupling in the vibronic coupling matrix. The momentum coupling has been termed the molecular Barnett effect when the active vibration transforms as the irreducible representation of a rotation in the molecular point group. Experimental evidence for the molecular Barnett effect has recently been found. In this paper the various point groups in which momentum and Barnett coupling can occur are investigated. A vibration capable of momentum coupling is contained in the asymmetric direct product of the degenerate electronic state and, as with the Jahn-Teller effect, is possible in the orbitally degenerate electronic states of molecules of all non-linear point groups. A static distortion along such a coordinate will lift the electronic degeneracy. Unlike the Jahn-Teller effect, however, in some point groups a minimum complexity of the molecule is required before such coupling can occur. In particular it will be absent in the degenerate electronic states of such simple molecules of the form X3(D3h); XY3(C3v, D3h); XY4(Td); and XY6(Oh).
Journal title :
Chemical Physics
Serial Year :
1996
Journal title :
Chemical Physics
Record number :
1057758
Link To Document :
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