X-ray atomic absorption of cesium and xenon in the L-edge region

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Abstract

X-ray absorption of atomic cesium is measured in the L-edge region, using a beryllium-window cell for cesium vapor. For comparison, absorption in Xe gas in the same energy region is remeasured with improved signal-to-noise ratio. By combining deconvolution and modeling, the edge profiles are studied to determine the threshold energies and the shape of the edge apex with exponential slope of the high-energy flank. In both elements, multielectron excitations show the same basic ordering in compact groups, largely independent of the core-hole subshell, following the energy sequence of coexcited valence and subvalence orbitals. The main effect of 6s electron in Cs, apart from 2(s,p)6s excitation, is the enhancement of single- as well as some multielectron resonant channels. The spectra of both elements show the "polarization effect": a convex basic curvature of the L2 and L3 segments, a concave L1 segment. Previously, Kutzner demonstrated a convincing theoretical explanation of the effect on Xe in a relativistic random-phase approximation with relaxation involving overlap integrals with continuum. © 2010 The American Physical Society.

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Kodre, A., Padežnik Gomilšek, J., Arčon, I., & Aquilanti, G. (2010). X-ray atomic absorption of cesium and xenon in the L-edge region. Physical Review A - Atomic, Molecular, and Optical Physics, 82(2). https://doi.org/10.1103/PhysRevA.82.022513

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