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Dispersion corrections to the forward Rayleigh scattering amplitudes around the L-shell of tantalum and lead

机译:钽和铅L壳周围正向瑞利散射幅度的色散校正

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Dispersion corrections to the forward Rayleigh scattering amplitudes of tantalum and lead in the photon energy range 6.4-24.14 keV were determined by a numerical evaluation of the dispersion integral that relates them through the optical theorem to the photoelectric cross-sections. The photoelectric cross-sections were extracted by subtracting the coherent and incoherent scattering contribution from the measured total attenuation cross-section, using a high-resolution, high-purity germanium detector in a narrow-beam good geometry setup. The real part of the dispersion correction to which the relativistic corrections calculated by Kissel and Pratt (S-matrix approach) or Creagh and McAuley (multipole corrections) have been included are in better agreement with the available theoretical values than those values to which the relativistic corrections calculated by Cromer and Liberman (dipole corrections) are added. Copyright (C) 2006 John Wiley & Sons, Ltd.
机译:钽和铅在光子能量范围6.4-24.14 keV中的正向瑞利散射幅度的色散校正是通过对色散积分的数值评估确定的,该色散积分通过光学定理将它们与光电截面相关联。通过在窄束良好几何结构中使用高分辨率,高纯度锗检测器,从测量的总衰减截面中减去相干和非相干散射贡献,可以提取出光电截面。由基瑟尔和普拉特(S-矩阵方法)或克雷格和麦考莱(多极校正)计算的相对论校正所包含的色散校正的实部,与相对论所对应的值相比,与可用的理论值更好地吻合。由Cromer和Liberman计算的校正(偶极校正)被添加。版权所有(C)2006 John Wiley&Sons,Ltd.

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