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Nuclear g-factor measurement with time-dependent recoil in vacuum in radioactive-beam geometry

A. Kusoglu A. Stuchbery G. E. Georgiev 1 A. Goasduff 1 L. Atanasova D. Balabanski M. L. Bostan P. Detistov K. Gladnishki J. Ljungvall 1 I. Matea 2 D. Radeck C. Sotty 1 I. Stefan 2 D. Verney 2 T.D. Yordanov 2
1 CSNSM SNO
CSNSM - Centre de Spectrométrie Nucléaire et de Spectrométrie de Masse, CSNSM - Centre de Sciences Nucléaires et de Sciences de la Matière : UMR8609
Abstract : A modi fied version of the time-differential recoil-in-vacuum (TDRIV) method, adapted for use with radioactive beams, was applied for the first time to perform a g-factor measurement on the first-excited state in Mg-24 (E-x = 1.369 MeV, tau = 1.97 ps). A high precision g-factor value was obtained using predominantly H-like ions. The results obtained demonstrate the versatility of the new approach and have the precision needed for stringent tests of shell model calculations.
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http://hal.in2p3.fr/in2p3-01168709
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Submitted on : Friday, June 26, 2015 - 2:16:31 PM
Last modification on : Wednesday, September 16, 2020 - 5:45:25 PM

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A. Kusoglu, A. Stuchbery, G. E. Georgiev, A. Goasduff, L. Atanasova, et al.. Nuclear g-factor measurement with time-dependent recoil in vacuum in radioactive-beam geometry. 1st NUBA International Conference on Nuclear Physics and Astrophysics, Sep 2014, Antalya, Turkey. pp.012041, ⟨10.1088/1742-6596/590/1/01204⟩. ⟨in2p3-01168709⟩

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