Intramolecular electron diffraction in vibrationally resolved K-shell photoionization of methane
Entity
UAM. Departamento de QuímicaPublisher
American Physical SocietyDate
2012-02-16Citation
10.1103/PhysRevA.85.023409
Physics review A 85.2 (2012): 023409
ISSN
1050-2947 (print); 1094-1622 (online)DOI
10.1103/PhysRevA.85.023409Funded by
Work supported by the MICINN Project Nos. FIS2010-15127, ACI2008-0777, and CSD 2007- 00010 (Spain), the European COST Action CM0702 and the MarieCurie ITNCORINF (EU), the XCHEM Advanced Grant 290853 of the European Research Council, the MEXT and JSPS agencies (Japan), and the Academy of FinlandProject
Gobierno de España. FIS2010-15127; Gobierno de España. ACI2008-0777; Gobierno de España. CSD 2007- 00010; info:eu-repo/grantAgreement/EC/FP7/290853; info:eu-repo/grantAgreement/EC/FP7/264951Editor's Version
http://dx.doi.org/10.1103/PhysRevA.85.023409Subjects
QuímicaRights
© 2012 American Physical SocietyAbstract
Current techniques based on x-ray or electron diffraction are successfully employed for structure determination in condensed matter but are sometimes limited when applied to low density media such as the gas phase. Here we show that vibrationally resolved photoelectron spectroscopy based on x rays generated by third generation synchrotron light sources can be used to infer the structure of isolated molecules in a simple and efficient way. In particular, we show that vibrational ratios obtained from inner shell C 1s photoelectron spectroscopy of isolated methane molecules exhibit pronounced oscillations that are the fingerprints of electron diffraction by the surrounding atomic centers, thus providing the necessary information for the determination of the molecular geometry
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Google Scholar:Plésiat, Etienne
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Argenti, Luca
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Kukk, Edwin
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Miron, Catalin
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Ueda, Kiyoshi
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Decleva, Piero
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Martín García, Fernando
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