Aj. Yencha et al., THRESHOLD PHOTOELECTRON-SPECTROSCOPY OF HCL UP TO 40 EV, Journal of electron spectroscopy and related phenomena, 73(2), 1995, pp. 217-229
The threshold photoelectron spectrum of HCl has been recorded using sy
nchrotron radiation over the energy range encompassing both outer and
inner valence ionization, A large enhancement in the intensity of the
v(+) = 0-1 bands of the HCl+2 Pi((3/2)) subsystem was observed in comp
arison with the same vibrational bands of the (2) Pi((1/2)) subsystem
which are attributed to autoionization processes. Resonance autoioniza
tion was also found to be responsible for the populating of upper vibr
ational levels (v(+) = 2-14) of the X(2) Pi(i) system in the Franck-Co
ndon gap region preceding the onset of the A(2) Sigma(+) band system.
The observation of vibrational-band broadening for v(+) = 7-10 of the
A(2) Sigma(+) system is attributed to combined autoionization processe
s between repulsive neutral Rydberg states and bound vibrational level
s of the A(2) Sigma(+) state and the continuum of repulsive ion states
, the latter of which are responsible for predissociation in the A(2)
Sigma(+) State of HCl+. In the inner valence ionization region (20.0-4
0.0 eV), pronounced resonance structure was observed which correlates
well with the calculated energy positions of 4 sigma(-1) satellite ion
s states of HCl+. In addition, the direct populating of repulsive ion
states in the 20.0-25.2 eV range is suggested by the observation of se
veral broad, structureless band features, and the detection of three v
ibrational bands in this same energy range suggests the presence of a
bound neutral Rydberg state that undergoes autoionization into the con
tinuum of a repulsive ion state.