A theoretical analysis on the vibronic spectra with mass analyzed threshold ionization spectroscopy

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Bibliographic Details
Title: A theoretical analysis on the vibronic spectra with mass analyzed threshold ionization spectroscopy
Authors: Chao, Sheng D. sdchao@spring.iam.ntu.edu.tw, Peng, Hsin Y.1
Source: Journal of Molecular Spectroscopy. Jan2008, Vol. 247 Issue 1, p30-40. 11p.
Subjects: Spectrum analysis, Ionization (Atomic physics), Resonance, Analog resonance
Abstract: Abstract: We have theoretically studied the absorption vibronic spectra with the resonance two-photon (R2P) and non-resonance two-photon (NR2P) mass analyzed threshold ionization (MATI) spectroscopy. The theory uses the inverse Born–Oppenheimer approximation (IBOA) to establish a proper basis set. To analyze the MATI vibronic spectra, we have calculated the Franck–Condon factors involved in the vibronic transitions. Several experimental spectra are analyzed using this theory with emphasis on the importance of the resonance intermediate states. The long vibrational progression in a MATI spectrum can be partly attributed to the result of including the anharmonic correction in the calculated Franck–Condon factors. The experimentally observed isotope effect is also analyzed. [Copyright &y& Elsevier]
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Database: Engineering Source
Description
Abstract:Abstract: We have theoretically studied the absorption vibronic spectra with the resonance two-photon (R2P) and non-resonance two-photon (NR2P) mass analyzed threshold ionization (MATI) spectroscopy. The theory uses the inverse Born–Oppenheimer approximation (IBOA) to establish a proper basis set. To analyze the MATI vibronic spectra, we have calculated the Franck–Condon factors involved in the vibronic transitions. Several experimental spectra are analyzed using this theory with emphasis on the importance of the resonance intermediate states. The long vibrational progression in a MATI spectrum can be partly attributed to the result of including the anharmonic correction in the calculated Franck–Condon factors. The experimentally observed isotope effect is also analyzed. [Copyright &y& Elsevier]
ISSN:00222852
DOI:10.1016/j.jms.2007.10.004