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Long-range Coulomb forces in DIS: missed radiative corrections?

机译:DIS中的远程库仑力:是否缺少辐射校正?

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The Born approximation, one photon exchange, used for DIS (deep inelastic scattering) is subject to virtual radiative corrections which are related to the long-range Coulomb forces. They may be sizeable for heavy nuclei since Zα is not a small parameter. So far, these corrections are known only for two processes, elastic scattering and bremsstrahlung on the Coulomb field of a point-like target. While the former amplitude acquires only a phase, in the latter case also the cross-section is modified. Although the problem of Coulomb corrections for DIS on nuclei is extremely difficult, it should be challenged rather than "swept under the carpet". The importance of these radiative corrections is questioned in the present paper. We show that, in the simplest case of a constant hadronic current, the Coulomb corrections provide a phase to the Born amplitude, therefore the cross-section remains the same. Inclusion of more realistic hadronic dynamics changes this conclusion. The example of coherent production of vector mesons off nuclei reveals large effects. So far a little progress has been made deriving lepton wave functions in the Coulomb field of an extended target. Employing available results based on the first-order approximation in Zα, we conclude that the Coulomb corrections are still important for heavy nuclei. We also consider an alternative approach for extended nuclear targets, the eikonal approximation, which we demonstrate to reproduce the known exact results for Coulomb corrections. Calculating electroproduction of vector mesons, we again arrive at a large deviation from the Born approximation. We conclude that one should accept with caution the experimental results for nuclear effects in DIS based on analyses done in the Born approximation.
机译:用于DIS(深层非弹性散射)的Born近似值(一个光子交换)受到与远程库仑力有关的虚拟辐射校正。由于Zα不是一个小参数,它们对于重核可能相当大。到目前为止,这些校正仅在两个过程中是已知的,即在点状目标的库仑场上的弹性散射和known致辐射。前者振幅仅获取相位,而后者则横截面也被修改。尽管核上DIS的库仑校正问题非常困难,但应该挑战而不是“扫过地毯”。这些辐射校正的重要性在本文件中受到质疑。我们表明,在最简单的恒定强子电流的情况下,库仑校正提供了一个与Born振幅相对的相位,因此横截面保持不变。包含更现实的强子动力学改变了这一结论。从核子相干产生矢量介子的例子揭示了很大的影响。到目前为止,在扩展目标的库仑场中导出轻子波函数方面已经取得了一些进展。利用基于Zα的一阶近似的可用结果,我们得出结论,库仑校正对于重核仍然很重要。我们还考虑了扩展核目标的另一种方法,即电子近似,我们证明了这种方法可以再现已知的库仑校正精确结果。计算矢量介子的电产生,我们再次得出与Born近似的较大偏差。我们得出的结论是,应该基于Born近似进行的分析,应谨慎接受DIS中核效应的实验结果。

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