Breaking a tetrahedral molecular ion with electrons: Study of NH$_4^+$

POSTER

Abstract

We apply a general theoretical model to study the dissociative recombination of the polyatomic ion NH$_4^+$. The high symmetry of the molecule, represented by the tetrahedral group, leads to complex vibronic couplings responsible for dissociative recombination. By applying multi-channel quantum defect theory and using symmetry considerations, we treat the doubly and triply degenerate modes and electronic states of NH$_4^+$ to calculate a theoretical cross section which agrees well with existing experimental data. This represents, to our knowledge, the first DR study for a molecular ion with triply degenerate electronic states and normal modes.

*This work is supported by the DOE Office of Basic Energy Science and the National Science Foundation, Grant No's PHY-08-55092 and PHY-08-55622.

Authors

  • Nicolas Douguet

    • University of California Davis
    • Dep. of Chemical Engineering and Materials Science, Univ. of California at Davis
    • Department of CHMS, University of California at Davis
  • Viatcheslav Kokoouline

    • University of Central Florida
    • UCF
  • Ann E. Orel

    • University of California Davis
    • UC Davis
    • UCDavis
    • Dep. of Chemical Engineering and Materials Science, Univ. of California at Davis
    • Dept. of Chemical Engineering and Materials Science, University of California, Davis