Absolute measurement of the relativistic magnetic dipole transition energy in heliumlike argon

The 1s2s (3)S(1)→1s(2) (1)S(0) relativistic magnetic dipole transition in heliumlike argon, emitted by the plasma of an electron-cyclotron resonance ion source, has been measured using a double-flat crystal x-ray spectrometer. Such a spectrometer, used for the first time on a highly charged ion tran...

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Veröffentlicht in:Physical review letters 2012-07, Vol.109 (4), p.043005-043005, Article 043005
Hauptverfasser: Amaro, Pedro, Schlesser, Sophie, Guerra, Mauro, Le Bigot, Eric-Olivier, Isac, Jean-Michel, Travers, Pascal, Santos, José Paulo, Szabo, Csilla I, Gumberidze, Alexandre, Indelicato, Paul
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Sprache:eng
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Zusammenfassung:The 1s2s (3)S(1)→1s(2) (1)S(0) relativistic magnetic dipole transition in heliumlike argon, emitted by the plasma of an electron-cyclotron resonance ion source, has been measured using a double-flat crystal x-ray spectrometer. Such a spectrometer, used for the first time on a highly charged ion transition, provides absolute (reference-free) measurements in the x-ray domain. We find a transition energy of 3104.1605(77) eV (2.5 ppm accuracy). This value is the most accurate, reference-free measurement done for such a transition and is in good agreement with recent QED predictions.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.109.043005