JAHN-TELLER EFFECT IN THE LOW-LYING K-SHELL EXCITED-STATES OF SIH4 AND THEIR BEHAVIOR TOWARDS DISSOCIATION - AN AB-INITIO STUDY

被引:1
作者
KOCH, A [1 ]
PEYERIMHOFF, SD [1 ]
机构
[1] UNIV BONN,INST PHYS & THEORET CHEM,D-53115 BONN,GERMANY
关键词
D O I
10.1080/00268979400101381
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The stability of various low-lying resonant K-shell excited states of SiH4 in the energy range below the K-shell ionization limit is examined, in particular with respect to the question whether or not dissociation can occur from the two lowest K-shell excited states. Photodissociation as a fast decay mechanism in concurrence to the Auger decay has been observed previously for HBr, HJ and CH3Br. Potential energy curves are calculated for these K-shell excited states of SiH4 by means of the MRD-CI method; the energies of the lowest fragmentation channels are also calculated by this method. It is shown that a repulsive path exists on the energy hypersurface of the lowest K-shell excited (1)A(1) state in C-3v symmetry; a fast dissociation may occur from this state which can be reached by a vibronically allowed transition. In C-2v symmetry a deep minimum of this state far away from the ground state equilibrium geometry is obtained due to the interaction of this state with the A(1) component of the lowest T-1(2) K-shell excited state which is subject to a strong Jahn-Teller splitting. The spectroscopic consequences of this Jahn-Teller splitting and the interaction of the lowest A(1) states are discussed. An interpretation of the most intense broad feature of the K-shell photoabsorption spectrum of silane is suggested on the basis of these results.
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页码:471 / 488
页数:18
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