ATOMIC AND MOLECULAR PHYSICS |
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Signature of Single Binary Encounter in Intermediate Energy He$^{2+}$–Ar Collisions$^*$ |
Yong Gao1,2, Xiao-Long Zhu1, Shao-Feng Zhang1, Rui-Tian Zhang1, Wen-Tian Feng1, Da-Long Guo1, Bin Li1, Dong-Mei Zhao1, Han-Bing Wang1,2, Zhong-Kui Huang1,2, Shun-Cheng Yan1, Dong-Bin Qian1, Xin-Wen Ma1** |
1Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000 2University of Chinese Academy of Sciences, Beijing 100049
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Cite this article: |
Yong Gao, Xiao-Long Zhu, Shao-Feng Zhang et al 2016 Chin. Phys. Lett. 33 073401 |
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Abstract We experimentally observe the signature of electron emission resulting from a single binary encounter mechanism in the intermediate collision energy regime of 30 keV/u He$^{2+}$ on argon. Electron emission spectra in the transfer ionization are obtained and compared with classical calculations from a two-step model considering the initial electron velocity and re-scattering of the binary encounter electron in the recoil potential. Although the present reaction is actually a four-body problem, the model starting from a binary encounter gives out surprisingly good agreement with the experimental data. Our studies show that orbital velocities of the electron affect the emission patterns of ionized electrons significantly.
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Received: 03 June 2016
Published: 01 August 2016
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