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Theoretical investigation of energy deposition and electron capture cross-sections for helium ion impact on formaldehyde

机译:氦离子对甲醛的能量沉积和电子俘获截面的理论研究

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The subject of the work presented here is related to damage caused by energetic, charged particle radiation such as electrons, protons, and alpha particles to prebiotic matter such as that found in interstellar space. The calculations are carried out using an all electron, all nuclei, scheme that explicitly treats the electron-nuclear coupling. We present results for the no-capture, as well as the single and double electron capture probabilities, as well as for the 1s and 21 (1 = s, p) contributions to the electron capture cross-sections of ~3He~(2+) projectiles on formaldehyde molecules. We find that the summed cross-section peaks at 10 keV/amu, and has a plateau between 0.1 and 1 keV/amu. We also present preliminary results for the nuclear, ro-vibrational and electronic stopping cross-section. We find a large contribution to the electronic stopping cross-section and a maximum shifted towards higher energies in the nuclear stopping cross-section, when compared to SRIM results. We interpret this to be a consequence of molecular bonding.
机译:此处介绍的工作主题与高能带电粒子辐射(例如电子,质子和α粒子)对益生元(例如星际空间中发现的物质)造成的损害有关。使用明确处理电子-核耦合的全电子全核方案进行计算。我们介绍了无捕获,单电子和双电子捕获概率以及1s和21(1 = s,p)对〜3He〜(2+ )在甲醛分子上的弹丸。我们发现,相加后的横截面在10 keV / amu处达到峰值,并且具有介于0.1和1 keV / amu之间的平稳期。我们还介绍了核,反振动和电子停止横截面的初步结果。与SRIM结果相比,我们发现对电子停止横截面的贡献很大,并且在核停止横截面上的最大值向更高能量转移。我们认为这是分子键合的结果。

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