High-resolution KMM radiative Auger x-ray emission spectra of calcium induced by synchrotron radiation

The KMM radiative Auger (RA) x-ray spectra of solid Ca were induced by monochromatic synchrotron radiation and measured with a high-resolution von Hamos bent crystal spectrometer. Two excitation energies were employed, one in the near K threshold region and the second well above the K absorption edg...

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Veröffentlicht in:Physical review. A, Atomic, molecular, and optical physics Atomic, molecular, and optical physics, 2011-04, Vol.83 (4), Article 042513
Hauptverfasser: Cao, W., Kavčič, M., Dousse, J.-Cl, Berset, M., Bučar, K., Budnar, M., Fennane, K., Hoszowska, J., Maillard, Y.-P., Szlachetko, J., Szlachetko, M., Žitnik, M.
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Sprache:eng
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Zusammenfassung:The KMM radiative Auger (RA) x-ray spectra of solid Ca were induced by monochromatic synchrotron radiation and measured with a high-resolution von Hamos bent crystal spectrometer. Two excitation energies were employed, one in the near K threshold region and the second well above the K absorption edge. The KMM RA spectral structure and relative intensity with respect to the diagram K{beta}{sub 1,3} (K-M{sub 3,2}) line are found to be independent of the excitation energy. The overall RA structure resembles the density of unoccupied s, p, and d states. Due to solid-state effects, however, spectral features resulting from the major discrete shake-up transitions could not be resolved. For the total KMM RA to K{beta}{sub 1,3} yield ratio, a value of 0.053(3) is obtained. The latter is compared to theoretical predictions and available experimental data obtained by various types of target excitation.
ISSN:1050-2947
1094-1622
DOI:10.1103/PhysRevA.83.042513