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                                       Details for article 5 of 11 found articles
 
 
  Finite size scaling for critical parameters of simple diatomic molecules
 
 
Title: Finite size scaling for critical parameters of simple diatomic molecules
Author: SHI, QICUN
KAIS, SABRE
Appeared in: Molecular physics
Paging: Volume 98 (2000) nr. 19 pages 1485-1493
Year: 2000-10-10
Contents: We use the finite size scaling method to study the critical points, points of non-analyticity, of the ground state energy as a function of the coupling parameters in the Hamiltonian. In this approach, the finite size corresponds to the number of elements in a complete basis set used to expand the exact eigenfunction of a given molecular Hamiltonian. To illustrate this approach, we give detailed calculations for systems of one electron and two nuclear centres, Z+e-Z+. Within the Born-Oppenheimer approximation, there is no critical point, but without the approximation the system exhibits a critical point at Z = Zc = 1.228279 when the nuclear charge, Z, varies. We show also that the dissociation occurs in a first-order phase transition and calculate the various related critical exponents. The possibility of generalizing this approach to larger molecular systems using Gaussian basis sets is discussed.
Publisher: Taylor & Francis
Source file: Elektronische Wetenschappelijke Tijdschriften
 
 

                             Details for article 5 of 11 found articles
 
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