Understanding of Nuclear Quadruple Interaction of $^{ 19}$F* and Binding Energies of Solid Fluorine at the First-Principles Level

ORAL

Abstract

We have studied the binding energy (BE) and nuclear quadrupole interaction (NQI) parameters for the $^{19}$F* excited nuclear state in solid fluorine as part of our investigation [1] of the properties of solid halogens using the first principles Hartree-Fock Cluster procedure combined with many-body perturbation theory (MBPT), implemented by the Gaussian 03 set of programs. Our results show that Van der Waals interaction obtained from intermolecular electron correlation has dominant effect on the BE but negligible effect on the NQI parameters. For the latter, our e$^{2}$qQ is 117.7MHz forQ($^{19}$F*), 0.072 *10$^{-28 }$m$^{2}$ [2] and $\eta $ is essentially zero.. The influence of vibrational effects on e$^{2}$qQ is being investigated using a first-principles procedure [3] to bridge the small remaining difference with experiment. [1] M.M. Aryal et al., Hyperfine Interact, 176, 51 (2007). [2] K.C.Mishra et al.,Phys. Rev.B25, 3389(1982). [3] N. Sahoo et al. Phys. Rev. Lett. 50, 913(1983) [4] H. Barfuss et al., Phys. Lett. 90A, 33(1982).

Authors

  • D.R. Mishra

    • TU, Kirtipur,Kathmandu, Nepal
  • M.M. Aryal

    • TU, Kirtipur,Kathmandu, Nepal
  • N.P. Adhikari

    • TU, Kirtipur, Kathmandu, Nepal
  • S.R. Badu

    • SUNY Albany
  • R.H. Pink

    • SUNY Albany
  • R.H. Scheicher

    • Uppsala University, Sweden
    • CMT Group, Uppsala
    • Condensed Matter Theory Group, Department of Physics and Materials Science, Uppsala University, Box 530, SE-751 21, Uppsala Sweden
  • Lee Chow

    • UCF Orlando
  • T.P. Das

    • SUNY Albany
    • SUNY Albany, UCF Orlando