G. Duchateau et al., A simple non-perturbative approach of atom ionisation by intense and ultra-short laser pulses, EUR PHY J D, 11(2), 2000, pp. 191-196
A simple theoretical approach based on Coulomb-Volkov states is introduced
to predict ionisation of atoms by intense laser pulses in cases where the e
ffective interaction time does not exceed one or two optical cycles [M. Nis
oli et al., Opt. Lett. 22, 522 (1997)]. Under these conditions, the energy
distributions of ejected electrons predicted by this non-perturbative appro
ach are in very good agreement with "exact" results obtained by a full nume
rical treatment. The agreement is all the better that the principal quantum
number of the initial state is high. For very strong fields, most electron
s are ejected at an energy E-C which is close to the classical kinetic ener
gy that would be transferred to free electrons by the electromagnetic field
during the pulse. The power of the present approach appears when E-C > 1 k
eV. In this region, full numerical treatments become very lengthy and final
ly do not converge. However, the present Coulomb-Volkov theory still makes
reliable predictions in very short computer times.