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Phase-shift analysis of low-energy pi(+/-)p elastic-scattering data

机译:低能pi(+/-)p弹性散射数据的相移分析

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摘要

Using electromagnetic corrections previously calculated by means of a potential model, we have made a phase-shift analysis of the pi(+/-)p elastic-scattering data up to a pion laboratory kinetic energy of 100 MeV. The hadronic interaction was assumed to be isospin invariant. We found that it was possible to obtain self-consistent databases by removing very few measurements. A pion-nucleon model, based on s- and u-channel diagrams with N and Delta in the intermediate states, and sigma and rho t-channel exchanges, was fitted to the elastic-scattering database obtained after the removal of the outliers. The model-parameter values showed an impressive stability when the database was subjected to different criteria for the rejection of experiments. Our result for the pseudovector pi NN coupling constant (in the standard form) is 0.0733 +/- 0.0014. The six hadronic phase shifts up to 100 MeV are given in tabulated form. We also give the values of the s-wave scattering lengths and the p-wave scattering volumes. Big differences in the s-wave part of the interaction were observed when comparing our hadronic phase shifts with those of the current GWU solution. We demonstrate that the hadronic phase shifts obtained from the analysis of the elastic-scattering data cannot reproduce the measurements of the pi(-)p charge-exchange reaction, thus corroborating past evidence that the hadronic interaction violates isospin invariance. Assuming the validity of the result obtained within the framework of chiral perturbation theory, that the mass difference between the u- and the d-quark has only a very small effect on the isospin invariance of the purely hadronic interaction, the isospin-invariance violation revealed by the data must arise from the fact that we are dealing with a hadronic interaction which still contains residual effects of electromagnetic origin. (c) 2006 Elsevier B.V. All rights reserved.
机译:使用先前通过势能模型计算出的电磁校正,我们对pi(+/-)p弹性散射数据进行了相移分析,直到pion实验室动能为100 MeV。强子相互作用被认为是等位不变的。我们发现有可能通过删除很少的度量来获得自洽的数据库。将基于中间状态下的N和Delta的s和u通道图以及sigma和rht通道交换的pion-核子模型拟合到去除异常值后获得的弹性散射数据库。当数据库经受拒绝实验的不同标准时,模型参数值显示出令人印象深刻的稳定性。我们的伪向量pi NN耦合常数(标准形式)的结果为0.0733 +/- 0.0014。以表格形式给出了高达100 MeV的六个强子相移。我们还给出了s波散射长度和p波散射体积的值。当将我们的强子相移与当前GWU解决方案的相移相比较时,观察到相互作用的s波部分存在很大差异。我们证明,从弹性散射数据的分析中获得的强子相移不能重现pi(-)p电荷交换反应的测量值,从而证实了强子相互作用违反了等位旋不变性的以往证据。假设在手性扰动理论框架内获得的结果是正确的,则u-夸克和d-夸克之间的质量差对纯强子相互作用的同位旋不变性只有很小的影响,这表明了同位旋不变性的违反数据必须来自我们正在处理的强子相互作用的事实,该相互作用仍然包含电磁起源的残留效应。 (c)2006 Elsevier B.V.保留所有权利。

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