Dimerization of polyacetylene treated as a spin-Peierls distortion of the Heisenberg Hamiltonian


Autoria(s): García Bach, Ma. de los Ángeles; Blaise, P.; Malrieu, J. P.
Contribuinte(s)

Universitat de Barcelona

Data(s)

04/05/2010

Resumo

Extracting a bond-length-dependent Heisenberg-like Hamiltonian from the potential-energy surfaces of the two lowest states of ethylene, it is possible to study the geometry of polyacetylene by minimization of the cohesive energy, using both variational-cluster and Rayleigh-Schrödinger perturbative expansions. The dimerization amplitude is satisfactorily reproduced. Optimizing the variational-cluster-expansion total energy with the equal-bond-length constraint, the barrier to reversal of alternation is obtained. The alternating-to-regular phase transition is treated from the Néel-state starting function and appears to be of second order.

Identificador

http://hdl.handle.net/2445/9734

Idioma(s)

eng

Publicador

The American Physical Society

Direitos

(c) The American Physical Society, 1992

info:eu-repo/semantics/openAccess

Palavras-Chave #Polímers #Elastòmers #Química física #Polymers #Elastomers #Physical chemistry
Tipo

info:eu-repo/semantics/article