The cross sections for dissociative recombination (DR) and dissociativ
e excitation (DE) have been measured for the H-2(+) and HD+ molecular
ions in the energy range from 0 to similar to 30 eV. An imaging techni
que that provides a measure of the kinetic energy release in the DR pr
ocess was used to yield information about the initial vibrational dist
ribution of the molecular ions and the final atomic states of the DR r
eaction. The results for DR with HD+ in the vibrational ground level,
nu=0, are compared with other measurements and recent multichannel qua
ntum defect theory calculations. Significant deviations that appear at
high energy similar to 5-10 eV are discussed. The present work report
s on an absolute DE measurement with HD+. The vibrational distribution
of H-2(+) was manipulated by photodissociation of ions in vibrational
ly excited levels. We obtained DE and DR cross sections for H-2(+) ion
s populating primarily the two lowest vibrational levels nu=0,1 and H-
2(+) ions in a broad vibrational distribution. It is found that DR of
H-2(+) with zero energy electrons results in the H(n=1) + H(n=2) final
channel, open for all vibrational levels, and in the H(n=1) + H(n=3)
channel, which is energetically open for initial vibrational levels nu
greater than or equal to 5.