Chen, Zhangjin, Zheng, Yanyan, Yang, Weifeng, Song, Xiaohong, Xu, Junliang, DiMauro, L. F., Zatsarinny, Oleg, Bartschat, Klaus, Morishita, Toru, Zhao, Song-Feng, and Lin, C. D. Numerical simulation of the double-to-single ionization ratio for the helium atom in strong laser fields. Physical Review A 92.6 Web. doi:10.1103/PhysRevA.92.063427.
Chen, Zhangjin, Zheng, Yanyan, Yang, Weifeng, Song, Xiaohong, Xu, Junliang, DiMauro, L. F., Zatsarinny, Oleg, Bartschat, Klaus, Morishita, Toru, Zhao, Song-Feng, & Lin, C. D. Numerical simulation of the double-to-single ionization ratio for the helium atom in strong laser fields. Physical Review A, 92 (6). https://doi.org/10.1103/PhysRevA.92.063427
Chen, Zhangjin, Zheng, Yanyan, Yang, Weifeng, Song, Xiaohong, Xu, Junliang, DiMauro, L. F., Zatsarinny, Oleg, Bartschat, Klaus, Morishita, Toru, Zhao, Song-Feng, and Lin, C. D.
"Numerical simulation of the double-to-single ionization ratio for the helium atom in strong laser fields". Physical Review A 92 (6). United States: American Physical Society. https://doi.org/10.1103/PhysRevA.92.063427.https://par.nsf.gov/biblio/10021897.
@article{osti_10021897,
place = {United States},
title = {Numerical simulation of the double-to-single ionization ratio for the helium atom in strong laser fields},
url = {https://par.nsf.gov/biblio/10021897},
DOI = {10.1103/PhysRevA.92.063427},
abstractNote = {Not Available},
journal = {Physical Review A},
volume = {92},
number = {6},
publisher = {American Physical Society},
author = {Chen, Zhangjin and Zheng, Yanyan and Yang, Weifeng and Song, Xiaohong and Xu, Junliang and DiMauro, L. F. and Zatsarinny, Oleg and Bartschat, Klaus and Morishita, Toru and Zhao, Song-Feng and Lin, C. D.},
}
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