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Relationship Between the Proton Charge Form Factor and the Quark-Quark Interaction

机译:质子电荷形态因子与夸克-夸克相互作用的关系

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We demonstrate how the parameterized proton elastic charge form factor may be used to determine the quark-quark interaction assuming a constituent-quark model of the nucleon and non-relativistic kinematics. The relation between the hypercentral component of the three-quark bound-state wave function and the charge density is obtained by using an Abel-type integral equation. To a high degree of accuracy, this component fixes the hypercentral potential, from which the quark-quark interaction may be determined exactly via another Abel transform. We find that the presence of the meson cloud makes it impossible to determine the long-range behaviour of the quark-quark potential. However, our results indicate that the Gari-Kruempelmann and dipole parametrizations of the form factor both generate potentials that are singular at short distances, indicating a degree of sensitivity of the form factor to the quark-quark interaction at small distances. We also generalize our technique to systems of arbitrarily large numbers of particles.
机译:我们演示了如何假设质子和非相对论运动学的组成夸克模型,如何使用参数化的质子弹性电荷形式因子来确定夸克-夸克相互作用。三夸克束缚态波函数的超中心分量与电荷密度之间的关系是通过使用Abel型积分方程获得的。高度准确地说,此组件固定了超中心势,可通过另一个Abel变换从中精确确定夸克-夸克的相互作用。我们发现介子云的存在使得无法确定夸克-夸克电位的远程行为。但是,我们的结果表明,形状因数的Gari-Kruempelmann和偶极子参数化都在短距离处产生奇异的电势,这表明形状因数对小距离处的夸克-夸克相互作用具有一定程度的敏感性。我们还将技术推广到任意数量的粒子系统。

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