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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Testing the ECPSSR theory and its modifications with ratios of antiproton-to-proton ionization cross sections
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Testing the ECPSSR theory and its modifications with ratios of antiproton-to-proton ionization cross sections

机译:测试ECPSSR理论及其反质子对质子电离截面之比的修改

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摘要

While fits to 90% of all ever measured K-shell ionization cross sections by protons are on the average within 10% of the ECPSSR [W. Brandt, G. Lapicki, Phys. Rev. A 23 (1981) 1717], this theory systematically overestimates the remaining 10% of all data (comprised mainly of the measurements on heavy target elements) in the slow collision regime of proton velocities less than 0.1 of the orbital velocity of the K-shell electron. For ionization of H and He, experimental ratios of antiproton-to-proton cross sections and benchmark theories thereof exist in the range around where the projectile and target electron velocities match and the cross sections peak. They confirm the excellent accuracy with which the antibinding/binding and antipolarization/polarization effects are accounted for in the perturbed-stationary state (PSS) treatment of the ECPSSR theory. It is shown that the K-shell ionization of heavy elements by MeV antiprotons, which were routinely extracted from the LEAR - or alternatively in ionization of light elements below 0.3 MeV that will become available at the GSI's future Facility for Low-Energy Antiproton and Ion Research (FLAIR) - would provide for a decisive and critical test between various modifications of the ECPSSR theory and any other theory of inner-shell ionization by protons and antiprotons.
机译:尽管质子适合所有测得的K壳电离截面的90%,平均在ECPSSR的10%以内[W.布兰特,G。拉皮基,物理学。 Rev. A 23(1981)1717],该理论系统地估计了质子速度小于K轨道速度0.1的慢速碰撞状态下所有数据的剩余10%(主要包括对重目标元素的测量) -壳电子。对于H和He的电离,反质子对质子横截面的实验比率及其基准理论存在于弹丸和目标电子速度匹配且横截面达到峰值的范围内。他们证实,在ECPSSR理论的摄动平稳状态(PSS)处理中,抗结合/结合和抗极化/极化作用具有极好的准确性。结果表明,MeV反质子的K壳电离通常是从LEAR中提取的,或者是0.3 MeV以下的轻元素的电离,这将在GSI未来的低能反质子和离子设施中提供研究(FLAIR)-将为ECPSSR理论的各种修改与质子和反质子对内壳电离的任何其他理论之间的决定性和关键性测试提供依据。

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