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Multiphoton ionisation and dissociation of NO2 by 50 fs laser pulses

✍ Scribed by R.P. Singhal; H.S. Kilic; K.W.D. Ledingham; C. Kosmidis; T. McCanny; A.J. Langley; W. Shaikh


Book ID
103034864
Publisher
Elsevier Science
Year
1996
Tongue
English
Weight
422 KB
Volume
253
Category
Article
ISSN
0009-2614

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✦ Synopsis


Multiphoton ionisation and dissociation of NO 2 has been studied experimentally at 375 nm for laser pulse widths of 10 ns and 50 fs. The parent NO 2 ion peak is not seen in the ns data. In all spectra, the main peak observed is due to the ionisation of the NO molecule which results from the dissociation of excited NO 2 formed after absorbing a 375 nm photon. The intensity dependencies of both NO and NO 2 ion peaks have also been measured. The data has been analysed within the context of a rate equation model using published cross-sections and dissociation rates except for the two-photon ionisation cross-section for NO 2 which was chosen to reproduce the NO2/NO ion signal ratios at 50 fs. The rate equation model provides a good description of the complete set of data. Indirectly, it may be concluded that coherence effects do not play an important role in the multiphoton excitation/ionisation of NO~. The data also rules out the importance of above-ionisation dissociation in NO 2 -a conclusion which is consistent with previous data at 496 and 248 nm for laser pulse widths > 300 fs.


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