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High-energy hadron-nucleus collisions. I. Protons

机译:高能强子-核碰撞。 I.质子

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摘要

A semiclassical theory is developed to describe high-energy (a10 BeV) reactions of hadrons with large nuclei. Coulomb phase effects are important, and they are accurately included in the formulas obtained. The theory is applied to data of Bellettini et al. at CERN for scattering of 19.3-BeV/c protons on large nuclei. Semiquantitative agreement of theory and experiment is obtained. However, for the case of a lead target, variation of the parameters in the theory did not produce a theoretical curve which agreed with the experimental p-Pb differential cross section over the entire range of angles measured. To obtain agreement at the smallest angles (before the first diffraction dip), it seems necessary to assume a much more diffuse nuclear surface than is indicated by electron scattering data. This is the regime in which the theory should be most reliable. To reproduce the oscillations in the data at larger angles, one seems forced to assume a fairly sharply defined surface, only slightly more diffuse than electron scattering suggests. Reasons are given why the effective nucleon density may be more diffuse for proton scattering than for electron scattering. Further experiments are suggested. © 1968 The American Physical Society.
机译:发展了半经典理论来描述具有大原子核的强子的高能(a10 BeV)反应。库仑相效应很重要,并且已精确地包含在所获得的公式中。该理论适用于Bellettini等人的数据。在欧洲核子研究中心(CERN)上用于大核上的19.3-BeV / c质子的散射。得到理论和实验的半定量一致性。但是,对于铅靶,理论上参数的变化没有产生与在整个测量角度范围内的实验p-Pb微分截面一致的理论曲线。为了在最小角度(第一次衍射倾角之前)获得一致性,似乎有必要假设其核表面的扩散程度要比电子散射数据所示的扩散得多。这是该理论最可靠的机制。为了以更大的角度再现数据中的振荡,似乎不得不假定表面相当清晰的表面,其扩散程度仅比电子散射所暗示的略大。给出了为什么有效质子密度对于质子散射比对于电子散射更扩散的原因。建议进一步的实验。 ©1968美国物理学会。

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