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A: Fachverband Atomphysik
A 27: Poster: Photoionization
A 27.9: Poster
Dienstag, 18. März 2014, 16:30–18:30, Spree-Palais
The 1s−12s−1,2p−1 shake up satellites in Argon — •R. Püttner1, T. Marchenko2, R. Guillemin2, R. K. Kushawaha2, L. Journel2, G. Goldsztejn2, D. W. Lindle4, M. N. Piancastelli2,5, J.-P. Rueff2,3, D. Ceolin3, and M. Simon2,3 — 1Freie Universität Berlin, Germany — 2CNRS and UPMC, UMR 7614, Paris , France — 3Synchrotron SOLEIL, Saint-Aubin, France — 4University of Nevada, Las Vegas, USA — 5Uppsala University, Sweden
Using a new experimental setup for high-resolution HAXPES in the gas phase, which is mounted at the GALAXIES beamline of SOLEIL, we investigated the 1s−12s−1,2p−1 shake up structures of Argon, The spectrum of the 1s−12p−1 shake up satellites is dominated by the np (n=4 to 7) Rydberg series converging towards the ionization thresholds 1P1 and 3P2,1,0, which are determined with high accuracy. Below the 1s−12s−1 thresholds the spectrum is dominated by the broad 1s−12s−1 (1,3S) 4s Rydberg states which are split by approximately 16 eV. Moreover, a number of narrow lines are observed above the 1s−12p−1 (1,3P) thresholds. Based on their linewidths and splittings these narrow lines are assigned to 1s−12p−1 (1,3P) 3p−1 n′l′n′′l ′′ final states populated via double shake processes. In addition, 1s−12p−1 the shake up satellites are also observed in molecules (S 1s−12p−1 in H2S, Cl 1s−12p−1 in CH3Cl and CCl4) showing that this is a rather general effect. This observation opens the exciting new possibility to study single-site double core-hole (SS DCH) states in Si, P, S, and Cl containing molecules using conventional photoelectron spectroscopy at synchrotron radiation facilities.