Ikeda, Progress in the ITER Physics Basics, Nuclear Fusion, vol. Spiller, Internal Note ACC-Note-Internal-2006-001(GSI, Darmstadt, 2006) (Lebedev Physical Institute, Moscow, 2011) Voitkiv, Excitation and Loss of Multicharged Ions in Relativistic Collisions with Atoms. Electron capture in stars K Langanke, G Martínez-Pinedo and R G T Zegers-Anion production in high-velocity cluster atom collisions the electron capture process revisited K Béroff, M Chabot, G Martinet et al.-Electron capture and ionization processes in high-velocity C n +, C Ar and C n +, C He collisions G Labaigt, A Jorge, C Illescas et al. Ozaki et al., Report NIFS-DATA-102 (NIFS, Toki, Japan 2008)į. Madsen, Vacuum changes during accumulations of Pb 54+ in LEIR. For a nuclide (A, Z) with a number of nucleons A and atomic number Z, double electron capture is only possible if the mass of the nuclide (A, Z2) is lower. Angert et al., GSI/CERN collaboration (1993, unpublished) Double electron capture is a decay mode of an atomic nucleus. Erb, GSI Report GSI-P-78, (Darmstadt, Germany 1978)ī. Smirnov, Reference Data on Atomic Physics and Atomic Processes(Springer, Berlin, 2008) However, the only geologically significant decay scheme involving electron-capture decay is that of 40 K to 40 Ar. Ullrich, Collisions of Structured Atomic Particles(Springer, Berlin, 2008)ī.M. Shevelko (ed.), Atomic Physics with Heavy Ions(Springer, Berlin, 1999)Ī. Rivarola, Electron Emission in Heavy-Ion-Atom Collisions(Springer, Berlin 1997) Meyerhof, Relativistic Atomic Collisions(Academic Press, New York, 1995) Shevelko, Physics of Highly Charged Ions(Springer, Berlin, 1985)
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