Abstract

SynopsisThe two-photon ionization of the Ne–CH4 and Ar–SH4 isoelectronic systems was studied theoretically for the photon energies exceeding the ionization threshold of the outer shells. The calculations demonstrate that the two-photon ionization of the investigated objects is almost entirely a collective process if the one-photon energy corresponds to the energy of the giant resonance. The largest contribution to the transition (2) amplitude stems from the Auger-like correlation .

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