Ultra-fast polarization of a thin electron layer in the rotational standing-wave field driven by double ultra-intense laser pulses (English)
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https://orcid.org/0000-0003-1181-6518
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https://orcid.org/0000-0003-1021-6991
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https://orcid.org/0000-0002-7107-0626
- New search for: Han, Qianqian
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https://orcid.org/0000-0002-8505-3595
- New search for: Geng, Xuesong
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https://orcid.org/0000-0003-1181-6518
- New search for: Shen, Baifei
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https://orcid.org/0000-0003-1021-6991
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Title:Ultra-fast polarization of a thin electron layer in the rotational standing-wave field driven by double ultra-intense laser pulses
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Contributors:Han, Qianqian ( author ) / Geng, Xuesong ( author ) / Shen, Baifei ( author ) / Xu, Zhizhan ( author ) / Ji, Liangliang ( author )
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Published in:New Journal of Physics ; 24, 6
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Publication date:2022-06-01
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Size:9 pages
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Table of contents – Volume 24, Issue 6
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
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Ultra-fast polarization of a thin electron layer in the rotational standing-wave field driven by double ultra-intense laser pulsesHan, Qianqian / Geng, Xuesong / Shen, Baifei / Xu, Zhizhan / Ji, Liangliang et al. | 2022
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This manuscript has been authored in part by UT-Battelle LLC, under contract DE-AC05-00OR22725 with the US Department of Energy (DOE). The US government retains and the publisher, by accepting the article for publication, acknowledges that the US government retains a nonexclusive, paid-up, irrevocable, worldwide license to publish or reproduce the published form of this manuscript, or allow others to do so, for US government purposes. DOE will provide public access to these results of federally sponsored research in accordance with the DOE Public Access Plan (https://energy.gov/downloads/doe-public-access-plan).
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