Measurement of the g Factor of the Bound Electron in Hydrogen-like Oxygen 16O7+

被引:0
|
作者
J. Verdú
T. Beier
S. Djekic
H. Häffner
H.-J. Kluge
W. Quint
T. Valenzuela
G. Werth
机构
[1] Universität Mainz,Institut für Physik
[2] GSI,undefined
来源
Hyperfine Interactions | 2003年 / 146-147卷
关键词
magnetic moment; factor; quantum electrodynamics; fundamental constants;
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摘要
The measurement of the g factor of the electron bound in a hydrogen-like ion is a high-accuracy test of the theory of Quantum Electrodynamics (QED) in strong fields. Here we report on the measurement of the g factor of the bound electron in hydrogen-like oxygen 16O7+. In our experiment a single 16O7+ ion is stored in a Penning trap. Quantum jumps between the two spin states (spin up and spin down) are induced by a microwave field at the spin precession frequency of the bound electron. The g factor of the bound electron is obtained by varying the microwave frequency and counting the number of spin flips. Our experimental value for the g factor of the bound electron is gexp(16O7+)=2.000 047 026(4). The theoretical prediction from non-perturbative bound-state QED calculations is gth(16O7+)=2.000 047 0202(6).
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页码:47 / 52
页数:5
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