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MESON-EXCHANGE CONTRIBUTIONS TO THE NUCLEAR CHARGE OPERATOR

机译:核电荷运算符的介子交换贡献

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摘要

The role of the meson-exchange current correction to the nuclear charge operator is studied in electron scattering processes involving the excitation of medium and heavy nuclei to energies up to the quasi-elastic peak. The effect of these contributions in the quasi-free electron scattering process is a reduction of at most a 3% in the longitudinal response at the energy of the peak, a value which is below the experimental error and must not be taken into account in calculations in this energy region. On the other hand, the excitation of low-lying nuclear levels of neutronic character shows, with respect to the protonic ones, a considerable effect due to the inclusion of the two-body term in the charge operator. More realistic calculations, such as those performed in the random-phase approximation framework, give rise to a mixing of one particle-one hole configurations of both kinds which reduce these effects. However, it has been found that the excitation of some of these levels is sizably affected by the meson-exchange contribution. More precise experimental data concerning some of these states, such as e.g. the high-spin states in Pb-208, could throw some light in the problem of a more feasible determination of these effects and, as a consequence, could provide an alternative procedure to determine the charge neutron form factor. (C) 1997 Elsevier Science B.V. [References: 48]
机译:在电子散射过程中研究了介子交换电流校正对核电荷算子的作用,该过程涉及激发中核和重核以激发能量直至准弹性峰。这些贡献在准无电子散射过程中的作用是使峰值能量处的纵向响应最多降低3%,该值低于实验误差,在计算中不得考虑在这个能源领域。另一方面,由于质子中包含了两体项,因此相对于质子,低中子核水平的激发显示出相当大的影响。更现实的计算(例如在随机相位近似框架中执行的计算)导致两种粒子的一个粒子一孔构型的混合降低了这些影响。然而,已经发现,介子交换作用相当大地影响了其中一些能级的激发。有关其中某些状态的更精确的实验数据,例如Pb-208中的高自旋态可能会为解决这些影响提供更可行的确定方法,因此,可以提供一种确定电荷中子形状因子的替代方法。 (C)1997 Elsevier Science B.V. [参考:48]

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