2018
DOI: 10.1103/physreva.97.013409
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Near-K-edge single, double, and triple photoionization ofC+ions

Abstract: Single, double, and triple ionization of the C + ion by a single photon have been investigated in the energy range 286 to 326 eV around the K-shell single-ionization threshold at an unprecedented level of detail. At energy resolutions as low as 12 meV, corresponding to a resolving power of 24 000, natural linewidths of the most prominent resonances could be determined. From the measurement of absolute cross sections, oscillator strengths, Einstein coefficients, multi-electron Auger decay rates and other transi… Show more

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Cited by 31 publications
(41 citation statements)
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“…Similar studies were also reported for other ions as well [76]. Recently, the photoionization measurements for mixed-state C 4+ ions were compared to dielectronic recombination cross sections of C 5+ + e − through the principle of detailed balance [72]. The metastable fraction of 10.8% was thus determined in very good agreement with calculations based on relativistic many-body perturbation theory.…”
Section: S2s 3 Ssupporting
confidence: 73%
“…Similar studies were also reported for other ions as well [76]. Recently, the photoionization measurements for mixed-state C 4+ ions were compared to dielectronic recombination cross sections of C 5+ + e − through the principle of detailed balance [72]. The metastable fraction of 10.8% was thus determined in very good agreement with calculations based on relativistic many-body perturbation theory.…”
Section: S2s 3 Ssupporting
confidence: 73%
“…Such processes are known to appear with a probability of a few percent following atomic K shell ionisation of light elements. 40,[53][54][55][56][57][58] For the molecular ions NH y + ( y = 1-3) there are more pathways, resonant and non-resonant, to create the detected N 2+ fragment compared to the two ionisation processes needed for the N + target to reach N 3+ , since hydrogen partners can leave the system either as neutral atoms or as protons. N 2+ , for instance, can be created from NH + via single Auger decay and release of a neutral hydrogen or via double Auger decay and release of a proton.…”
Section: Resultsmentioning
confidence: 99%
“…Two permanent experimental installations were used, namely, the PIPE (Photon-Ion Spectrometer at PETRA III) endstation [30,31] of beamline P04 [32] and the IPB (Ion-Photon Beamline) endstation [33] of beamline 10.0.1. at the ALS. Several of the most recent publications of the present collaboration on photoprocesses of ions studied at the endstations at the ALS [13,[34][35][36][37] and at PETRA III [38][39][40][41][42][43] illustrate the experimental capabilities and the latest developments.…”
Section: Methodsmentioning
confidence: 97%