首页> 外文期刊>Journal of Physics, G. Nuclear and Particle Physics: An Institute of Physics Journal >Can one directly test the scalar-vector Lorentz structure of the nucleon-and antinucleon-nucleus potential?
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Can one directly test the scalar-vector Lorentz structure of the nucleon-and antinucleon-nucleus potential?

机译:一个人可以直接测试核子和反核子核势的标量矢量洛伦兹结构吗?

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摘要

Quantum hadrodynamics in mean-field approximation describes the effective nucleon-nucleus potential (about -50 MeV deep) as resulting from a strong repulsive vector (about 400 MeV) and a strong attractive scalar (about -450 MeV) contribution. This scalar-vector Lorentz structure implies a significant lowering of the threshold for pp-bar photoproduction on a nucleus by about 850 MeV as compared with the free case since charge conjugation reverses the sign of the vector potential contribution in the equation of motion for the p-bar states. We discuss the possibility of measurable signatures of the scalar-vector structure of the nucleon-nucleus potential for the pp-bar photoproduction. The pp-bar photoproduction cross section is calculated for the target nucleus ~(208)Pb near threshold. We indicate the increased cross section for emission of charged pions as a consequence of the subsequent p-bar annihilation within the nucleus. The inclusive cross section for #gamma#-induced pp-bar creation and the resulting increase of charged pion production are probably too small as compared with the expected background to be measurable.
机译:平均场近似中的量子hadrodynamics描述了有效的核子核电势(约-50 MeV深)是由于强大的排斥矢量(约400 MeV)和强大的吸引标量(约-450 MeV)贡献所致。这种标量矢量洛伦兹结构意味着与自由情形相比,原子核上pp条光产生的阈值显着降低了约850 MeV,这是因为电荷共轭反转了p运动方程中矢量电势贡献的符号-酒吧状态。我们讨论了pp条光产生的核子-核势的标量向量结构的可测量特征的可能性。为目标核〜(208)Pb接近阈值计算pp-bar光生产横截面。我们指出由于核内随后的p棒an没,导致带电离子发射的横截面增加。与预期的背景相比,由#gamma#引起的pp杆创建所包含的横截面以及带电介子产量的增加结果可能太小而无法测量。

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