Quantum dynamics from abinitio points

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D Y. Wang, T Peng, J Z. H. Zhang, W C Chen and C H. Yu


Abstract

In this paper, we explore the numerical feasibility of carrying out quantum dynamics calculations from abinitio points for gas phase chemical reactions. In this approach, the abinitio data are first generated from quantum chemistry programs on a coarse numerical grid and a quantum dynamics calculation is then carried out using data from these grids. A crucial step in the success of this method is the application of a sequential one-dimensional fitting approach (SOFA) to give potential energy information off the original numerical grid. Using the SOFA scheme, one avoids the traditional and often intractable task of fitting a global potential energy surface from the abinitio data. In the present paper, a numerical test of this approach is reported for time-dependent wavepacket calculation for the prototype H+H2 reaction.


References

  1. D. H. Zhang and J. Z. H. Zhang, J. Chem. Phys., 1994, 101, 5615 CrossRef.
  2. J. Z. H. Zhang, J. Dai and W. Zhu, J. Phys. Chem. A, 1997, 101, 2746 CrossRef CAS.
  3. J. N. Murrel, S. Carter, S. C. Farantos, P. Huxley and A. J. C. Varandas, Molecular Potential Energy Functions, Wiley, Chichester, 1984 Search PubMed.
  4. T. S. Ho, T. Hollebeek and H. Rabitz, J. Chem. Phys., 1996, 105, 10472 CrossRef CAS.
  5. D. K. Hoffman, A. Frishman and D. J. Kouri, Chem. Phys. Lett., 1996, 262, 393 CrossRef CAS; A. Frishman, D. K. Hoffman and D. J. Kouri, J. Chem. Phys., 1997, 107, 804 CrossRef CAS.
  6. N. Sathymirthy and L. M. Raff, J. Chem. Phys., 1975, 63, 464 CrossRef.
  7. D. H. Zhang and J. Z. H. Zhang, 1994, 101, 3671.
  8. B. Liu, J. Chem. Phys., 1973, 58, 1924 CrossRef CAS; P. Siegbahn and B. Liu, J. Chem. Phys., 1978, 68, 2457 CrossRef CAS; D. G. Truhler and C. J. Horowitz, J. Chem. Phys., 1978, 68, 2466 CrossRef CAS.
  9. T. H. Dunning, Jr., J. Chem. Phys., 1989, 90, 1007 CrossRef CAS.
  10. MOLPRO is a package of ab initio programs written by H.-J. Werner and P. J. Knowles, with contributions from J. Almlöf, R. D. Amos, A. Berning, M. J. O. Deegan, F. Eckert, S. T. Elbert, C. Hmapel, R. Lindh W. Meyer, A. Nicklass, K. Peterson, R. Pitzer, A. J. Stone, P. R. Taylor, M. E. Mura, P. Pulay, M. Schuetz, H. Stoll, T. Thorsteinsson and D. L. Cooper.
  11. D. H. Zhang and J. Z. H. Zhang, J. Chem. Phys., submitted Search PubMed.
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