首页> 外文会议>International Workshop on the New Applications of Nuclear Fission; 20030907-12; Bucharest(RO) >K-SHELL VACANCY PRODUCTION AND SHARING IN (0.2-1.75) MEV/u Fe, Co + Cr COLLISIONS
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K-SHELL VACANCY PRODUCTION AND SHARING IN (0.2-1.75) MEV/u Fe, Co + Cr COLLISIONS

机译:(0.2-1.75)MEV / u Fe,Co + Cr碰撞中K壳空位的产生和共享

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摘要

K-shell ionization cross sections and mean vacancy sharing probabilities measured in the near-symmetric collision systems Fe and Co + Cr at 0.2 -1.75 MeV/u energies are reported. The cross section values have been corrected for multiple ionization in the outer (L, M) shells by using the energy and yield shift method. Mean ionization probabilities per electron in the outer shells have been estimated. Calculations in the Briggs model, using SCA with relativistic hydrogenic wave functions and binding correction, could explain the 2pσ -molecular orbital ionization cross sections at higher energies ( ≥ 1 MeV/u). The vacancy sharing results show that predictions of a two-state coupling Meyerhof-Demkov model is less fulfilled at higher energies ( ≥ 1.5 MeV/u).
机译:报告了在近对称碰撞系统Fe和Co + Cr在0.2 -1.75 MeV / u能量下测得的K壳电离截面和平均空位共享概率。横截面值已通过使用能量和屈服偏移方法针对外壳(L,M)中的多次电离进行了校正。估计了外壳中每个电子的平均电离概率。 Briggs模型中的计算,使用具有相对论性氢波函数和结合校正的SCA,可以解释在较高能量(≥1 MeV / u)下的2pσ-分子轨道电离截面。空位共享结果表明,在较高能量(≥1.5 MeV / u)下,对两态耦合Meyerhof-Demkov模型的预测不那么令人满意。

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