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Theoretical study of photoelectron angular distribution in (1+1{sup {prime}})-photon resonance-enhanced multiphoton ionization of the H{sub 2} molecule

Journal Article · · Physical Review A
;  [1]
  1. Atomic and Molecular Physics Section, Department of Materials Science, Indian Association for the Cultivation of Science, Jadavpur, Calcutta 700 032 (India)

We have studied the effect of laser intensity on the photoelectron angular distribution (PEAD) in (1+1{sup {prime}})-photon resonance-enhanced multiphoton ionization (REMPI) of the H{sub 2} molecule via {ital B}{sup 1}{Sigma}{sub {ital u}} ({ital v}=4; {ital j}=1,2) levels. It has been found that both the total and the vibrationally resolved angular distributions [for the formation of H{sub 2}{sup +} ion in ground {ital X}{sup 2}{Sigma}{sub {ital g}}({ital v}{sup +}=0,1) levels] vary with laser intensity. Intensity dependence of corresponding asymmetry parameters has also been studied. We have shown that this variation with laser intensity is caused by two effects: (i) the effect of interference of ionization channels via different vibrational levels of {ital B}{sup 1}{Sigma}{sub {ital u}} and {ital C}{sup 1}{Pi}{sub {ital u}} states, and (ii) the effect of coupling between these levels (Raman-like transitions) via continuum. Furthermore, the nature of variation of the PEAD and of the corresponding asymmetry parameters with laser intensity have also been found to depend on the choice of different rotational levels as resonances. This difference in variation is due to the variation in strength of interference and the Raman-like couplings effective in these REMPI processes.

OSTI ID:
124258
Journal Information:
Physical Review A, Journal Name: Physical Review A Journal Issue: 4 Vol. 52; ISSN 1050-2947; ISSN PLRAAN
Country of Publication:
United States
Language:
English