Journalartikel

Photoabsorption of the molecular IH cation at the iodine 3d absorption edge


AutorenlisteKlumpp, Stephan; Guda, Alexander A.; Schubert, Kaja; Mertens, Karolin; Hellhund, Jonas; Mueller, Alfred; Schippers, Stefan; Bari, Sadia; Martins, Michael

Jahr der Veröffentlichung2018

ZeitschriftPhysical review A

Bandnummer97

Heftnummer3

ISSN2469-9926

eISSN2469-9934

Open Access StatusHybrid

DOI Linkhttps://doi.org/10.1103/PhysRevA.97.033401

VerlagAmerican Physical Society


Abstract
Yields of atomic iodine Iq+ (q >= 2) fragments resulting from photoexcitation and photoionization of the target ions IH+ and I+ have been measured in the photon-energy range 610-680 eV, which comprises the thresholds for iodine 3d ionization. The measured ion-yield spectra show two strong and broad resonance features due to the excitation of the 3d(3/2,5/2) electrons into epsilon f states rather similar for both parent ions. In the 3d pre-edge range, excitations into (np pi)-like orbitals and into an additional sigma* orbital are found for IH+, which have been identified by comparison of the atomic I+ and molecular IH+ data and with the help of (time-dependent) density functional theory (DFT) and atomic Hartree-Fock calculations. The (5p pi) orbital is almost atomlike, whereas all other resonances of the IH+ primary ion show a more pronounced molecular character, which is deduced from the chemical shifts of the resonances and the theoretical analysis.



Zitierstile

Harvard-ZitierstilKlumpp, S., Guda, A., Schubert, K., Mertens, K., Hellhund, J., Mueller, A., et al. (2018) Photoabsorption of the molecular IH cation at the iodine 3d absorption edge, Physical review A, 97(3), Article 033401. https://doi.org/10.1103/PhysRevA.97.033401

APA-ZitierstilKlumpp, S., Guda, A., Schubert, K., Mertens, K., Hellhund, J., Mueller, A., Schippers, S., Bari, S., & Martins, M. (2018). Photoabsorption of the molecular IH cation at the iodine 3d absorption edge. Physical review A. 97(3), Article 033401. https://doi.org/10.1103/PhysRevA.97.033401



Schlagwörter


CROSS-SECTIONSHYDROGEN IODIDEIONIZATION-POTENTIALSPHOTOIONIZATION

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