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Structure and properties of nonclassical polymers
Authors:Christo I. Ivanov  Nikolai Tyutyulkov  Gottfried Olbrich  H. Barentzen  Oscar E. Polansky
Affiliation:(1) Max-Planck-Institut für Strahlenchemie, Stiftstrasse 34-36, D-4330 Mülheim a.d. Ruhr, Germany;(2) Present address: Institute of Organic Chemistry, Bulgarian Academy of Sciences, 113 Sofia, Bulgaria
Abstract:Utilizing an extended Hubbard-type Hamiltonian which incorporates both nearest-neighbour Coulomb repulsion and exchange interactions, we have studied the energy dispersion of the lowest elementary excitation from the ferromagnetically aligned state of quasi one-dimensional alternant hydrocarbon networks. It was found that the main effect of the long range Coulomb interaction may be thought of as a renormalization (screening) of the on-site Hubbard integral. This implies an enhancement of the kinetic exchange term and impairs the stability of the ferromagnetic state towards single spin inversions. However, for physically relevant values of the parameters entering the model Hamiltonian, the collective spin excitation represents a magnon, whose energy band lies above the reference value pertaining to the magnetically saturated configuration.Dedicated to Prof. Dr. Adolf Neckel on the occasion of his 60th birthday
Keywords:Organic magnetism  Alternant polymers  Magnon  Effective Heisenberg exchange
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