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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Theoretical study of electron impact single ionization of neon by multicenter three distorted-wave method at low projectile energy: an overall agreement with experiment
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Theoretical study of electron impact single ionization of neon by multicenter three distorted-wave method at low projectile energy: an overall agreement with experiment

机译:电气电气冲击单电离的理论研究在低射弹能量下多中心三扭转波法:实验总体协议

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Universal theoretical description of electron impact single ionization process for complex atoms and molecules is a long-standing challenge. A perturbative approach named multicenter three distorted wave method (MCTDW) has recently been developed by our group, aiming at calculating (e, 2e) fully differential cross sections for molecular target. In MCTDW method, the incident, scattered and ejected electrons are described by distorted waves using single center expansion technique. The continuum wave functions of the incident and two outgoing electrons are solved in the potential of neutral molecule and ion, respectively. The accuracy and generality of this method has been demonstrated for water molecule as well as simple two-electron atom helium (2018 Phys. Rev. A 98 042710) . Here MCTDW is extended to investigate more complex multi-electron atom neon of electron impact ionization from its 2p orbital at projectile energy of 100 eV and 65 eV. The results are compared with the internormalized experiments reported in the literatures (2013 Phys. Rev. Lett. 110 153202; 2015 Phys. Rev. A. 91 032707). An overall agreement has been achieved with experimental data for different scattering angles and energies, as well as theoretical calculations employing nonperturbative B-spline R-matrix with pseudostates approach.
机译:复杂原子和分子的电子碰撞单电离过程的普遍理论描述是一个长期的挑战。我们小组最近开发了一种微扰方法,称为多中心三畸变波法(MCTDW),旨在计算分子靶的(e,2e)全微分截面。在MCTDW方法中,入射、散射和射出的电子通过单中心展开技术用畸变波来描述。分别在中性分子和离子势下求解了入射电子和两个出射电子的连续波函数。该方法的准确性和通用性已被证明适用于水分子和简单的双电子原子氦(2018 Phys.Rev.A 98 042710)。在这里,MCTDW被扩展到研究更复杂的多电子原子氖在其2p轨道上的电子碰撞电离,入射能量为100eV和65eV。结果与文献中报道的内部标准化实验进行了比较(2013年物理版Lett.110 153202;2015年物理版A.91 032707)。对于不同散射角和能量的实验数据,以及采用伪态方法的非微扰B样条R矩阵的理论计算,已经取得了总体一致性。

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