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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Measuring electron-impact cross sections of water: elastic scattering and electronic excitation of the (a)over-tilde(3)B(1) and (A)over-tilde(1)B(1) states
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Measuring electron-impact cross sections of water: elastic scattering and electronic excitation of the (a)over-tilde(3)B(1) and (A)over-tilde(1)B(1) states

机译:测量水的电子冲击截面:(a)波浪线(3)B(1)和(A)波浪线(1)B(1)状态的弹性散射和电子激发

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摘要

Here, we report elastic differential cross sections (DCSs) for electron scattering from water in the incident energy range of 2-100 eV. Furthermore, we present a complete study on the electronic excitation of the (a) over tilde B-3(1) and (A) over tilde B-1(1) states at electron impact energies of 15, 20, and 30 eV and in the scattering angle range of 10. -130.. Integral cross sections (ICSs) are determined from the DCSs. Measuring elastic DCSs in various experimental conditions confirmed the reproducibility of the data. The present results agree with the data previously obtained from a conventional collimating tube gas source. Ambiguities associated with the unfolding procedure of the electron energy loss (EEL) spectra for the electronic excitations have been reduced by comparison against the EEL spectrum at high electron impact energy and for small scattering angle. The reliability of the extracted DCSs is improved significantly for optically forbidden contributions from the overlap of the (a) over tilde B-3(1) and (A) over tilde B-1(1) electronic states. The BEf-scaling model is also confirmed to produce the integral cross section for the optical allowed transition of the (A) over tilde B-1(1) state in the intermediate electron energy region above 15 eV.
机译:在这里,我们报告了在2-100 eV入射能量范围内从水中电子散射的弹性微分截面(DCSs)。此外,我们对电子冲击能为15、20和30 eV的(a)在波浪线B-3(1)上和(A)在波浪线B-1(1)上的电子激发进行了完整的研究。散射角在10度范围内。-130 ..整体截面(ICSs)由DCS确定。在各种实验条件下测量弹性DCS证实了数据的可重复性。本结果与先前从常规准直管气体源获得的数据一致。通过与在高电子冲击能和小散射角下的EEL谱进行比较,可以减少与电子激发的电子能量损失(EEL)谱展开过程相关的歧义。对于(a)代字号B-3(1)和(A)代字号B-1(1)电子状态的重叠在光学上的禁止贡献,提取的DCS的可靠性显着提高。还证实了BEf缩放模型可在15 eV以上的中间电子能量区域中产生(A)在波浪线B-1(1)上的光学允许跃迁的积分截面。

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