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Electron-impact ionization of atomic hydrogen at incident electron energies of 15.6, 17.6, 25, and 40 eV

机译:入射氢能量为15.6、17.6、25和40 eV时氢原子的电子碰撞电离

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摘要

Absolute doubly differential cross sections for the electron-impact ionization of atomic hydrogen have been measured from near threshold to intermediate energies. The measurements are calibrated to the well-established, accurate differential cross section for electron-impact excitation of the atomic hydrogen transition H(12S⃗22S+22P). In these experiments background secondary electrons are suppressed by moving the atomic hydrogen target source to and from the collision region. Measurements cover the incident electron energy range of 14.6–40 eV, for scattering angles of 10°–120° and are found to be in very good agreement with the results of the most advanced theoretical models—the convergent close-coupling model and the exterior complex scaling model.
机译:已测量了从近阈值到中间能的原子氢电子碰撞电离的绝对双微分截面。将测量结果校准为公认的,精确的微分横截面,用于原子氢跃迁H(12S⃗22S+ 22P)的电子碰撞激发。在这些实验中,通过将氢原子目标源移入和移出碰撞区域来抑制背景二次电子。测量覆盖了入射电子能量范围14.6–40 eV,散射角为10°–120°,并且发现与最先进的理论模型(会聚的紧密耦合模型和外部)的结果非常吻合复杂的缩放模型。

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