Published September 1996 | Version v1
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A UniChem and electron momentum spectroscopy investigations into the valence electronic structure of trans 1,3 butadiene

  • 1. CSIRO, Supercomputing Support Group, Carlton, VIC (Australia). Division of Information Technology
  • 2. Commonwealth Scientific and Industrial Research Organisation (CSIRO), Clayton, VIC (Australia). Div. of Chemical Physics
  • 3. Flinders Univ. of South Australia, Bedford Park, SA (Australia). School of Physical Sciences

Description

The experimental (e,2e) coincidence spectroscopy, known as electron momentum spectroscopy (EMS) was applied to the trans 1,3 butadiene (C4H6) molecule with detailed binding energy spectra and orbital momentum distributions (MDs) being measured. A small selection of this data is presented. The usage of UniChem computational chemistry codes for the Flinders-developed AMOLD program allows to calculate theoretical MDs for each orbital, to help elucidate the valence electronic structure of butadiene. The results of the many-body Green's function calculation is also presented, to the ADC(3) level, for the binding energies and spectroscopic factors of the respective orbitals of C4H6. A critical comparison between the experimental and theoretical MDs allows to determine the optimum wavefunction from the basis sets studied. The determination of the wavefunction then allows to make further use of the UniChem package to derive butadiene's chemically interesting molecular properties. A summary of these results and comparison of them with the previous results of other workers is presented. 23 refs., 2 tabs., 2 figs

Availability note (English)

MF available from INIS under the Report Number.

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Publishing Information

Imprint Pagination
8 p.
Report number
ESM--139