Ab initio potential energy surfaces for excited electronic states of the molecular ion HCN+
Abstract
Potential energy surfaces for the linear 2Π, 22Π, Ã2Σ+, 2Σ+, 32Σ+, 14Π and 14Σ+ states and for the bent B2Σ+/32A′ state of HCN+ have been calculated by a multi-reference configuration interaction (MRCI) method. The persistence of vibrational structure in the photoelectron spectrum of the state above the experimental dissociation asymptote is interpreted in terms of a local maximum on the potential energy surface with respect to stretching the CH bond. The global minimum for this state has a bent geometry with a bond angle of 129°. This is discussed in terms of an avoided intersection with the A′ component of the 22Π state for bent geometries. The 32Σ+ surface is quasi-bound and it is suggested that a satellite state at 22.5 eV in the photoelectron spectrum of HCN is the 32Σ+ state. The predissociation of the 2Σ+ state is discussed and it is suggested that this may occur via non-adiabatic transitions to the 14Π/14A′ surface.