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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Non-eikonal corrections for the scattering of spin-one particles
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Non-eikonal corrections for the scattering of spin-one particles

机译:自旋粒子散射的非本征校正

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摘要

The Wallace Fourier-Bessel expansion of the scattering amplitude is generalised to the case of the scattering of a spin-one particle from a potential with a single tensor coupling as well as central and spin-orbit terms. A generating function for the eikonal-phase (quantum) corrections is evaluated in closed form. For medium-energy deuteron-nucleus scattering, the first-order correction is dominant and is shown to be significant in the interpretation of analysing power measurements. This conclusion is supported by a numerical comparison of the eikonal observables, evaluated with and without corrections, with those obtained from a numerical resolution of the Schrodinger equation for d-Ni-58 scattering at incident deuteron energies of 400 and 700 MeV.
机译:散射幅度的华莱士傅里叶-贝塞尔展开被推广到自旋粒子从具有单个张量耦合以及中心和自旋轨道项的势能散射的情况。以封闭形式评估用于本征相位(量子)校正的生成函数。对于中等能量的氘核扩散,一阶校正是主要的,在解释功率测量的解释中显示出重要意义。这一结论得到了对有形和无形观测值的数值比较的数值比较的支持,该数值比较是通过校正和未经校正的校正,以及从在400和700 MeV氘核能量下d-Ni-58散射的Schrodinger方程的数值分辨率获得的。

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