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Analysis of multiple scattering contributions in electron-impact ionization of molecular hydrogen

机译:分子氢电离电离中多种散射贡献分析

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We report a combined experimental and theoretical study on the low-energy (E-0 = 31.5 eV) electron-impact ionization of molecular hydrogen (H-2). Triple differential cross sections are measured for a range of fixed emission angles of one outgoing electron between theta(1) = -70 degrees and -130 degrees covering the full 4 pi solid angle of the second electron. The energy sharing of the outgoing electrons varies from symmetric (E-1= E-2 = 8 eV) to highly asymmetric (E-1 = 1 eV and E2. =. 15 eV). In addition to the binary and recoil lobes, a structure is observed perpendicular to the incoming beam direction which is due to multiple scattering of the projectile inside the molecular potential. The absolutely normalized experimental cross sections are compared with results from the time-dependent close-coupling (TDCC) calculations. Molecular alignment dependent TDCC results demonstrate that these structures are only present if the molecule axis is lying in the scattering plane.
机译:我们报告了对分子氢的低能量(E-0 = 31.5 eV)电子冲击电离(H-2)的组合实验和理论研究。 测量三重差分横截面,用于在塔(1)= -70度和-130度之间的一个输出电子之间的一系列固定发射角度,覆盖第二电子的全4 PI立体角。 输出电子的能量共享从对称(E-1 = E-2 = 8eV)变化到高度不对称(E-1 = 1eV和E2。=。15eV)。 除了二进制和反斜叶之外,垂直于进入的光束方向观察到结构,这是由于分子势内的射弹的多个散射。 将绝对归一化的实验横截面与时间依赖性近耦合(TDCC)计算的结果进行比较。 分子比对依赖性TDCC结果表明,如果分子轴线在散射平面中仅存在这些结构。

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