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Enhanced hole boring with two-color relativistic laser pulses in the fast ignition scheme
Yu, Changhai; Deng, Aihua; Tian, Ye; Li, Wentao; Wang, Wentao; Zhang, Zhijun; Qi, Rong; Wang, Cheng; Liu, Jiansheng; aihuadeng1985@gmail.com; michaeljs_liu@siom.ac.cn
2016
Source PublicationPhys. Plasmas
Volume23Issue:8
AbstractA scheme of using two-color laser pulses for hole boring into overdense plasma as well as energy transfer into electron and ion beams has been studied using particle-in-cell simulations. Following an ultra-short ultra-intense hole-boring laser pulse with a short central wavelength in extreme ultraviolet range, the main infrared driving laser pulse can be guided in the hollow channel preformed by the former laser and propagate much deeper into an overdense plasma, as compared to the case using the infrared laser only. In addition to efficiently transferring the main driving laser energy into energetic electrons and ions generation deep inside the overdense plasma, the ion beam divergence can be greatly reduced. The results might be beneficial for the fast ignition concept of inertial confinement fusion. Published by AIP Publishing.
SubtypeArticle
Department强光
DOI10.1063/1.4960036
Funding OrganizationNational Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800] ; National Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800] ; National Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800] ; National Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800]
Indexed BySCI
Funding OrganizationNational Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800] ; National Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800] ; National Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800] ; National Natural Science Foundation of China [11425418, 61521093, 11304271, 11205228, 11505263]; Natural Science Foundation of Shanghai [14ZR1444800]
WOS IDWOS:000383878100053
Citation statistics
Document Type期刊论文
Identifierhttp://ir.siom.ac.cn/handle/181231/28596
Collection强场激光物理国家重点实验室
Corresponding Authoraihuadeng1985@gmail.com; michaeljs_liu@siom.ac.cn
Affiliation中国科学院上海光学精密机械研究所
Recommended Citation
GB/T 7714
Yu, Changhai,Deng, Aihua,Tian, Ye,et al. Enhanced hole boring with two-color relativistic laser pulses in the fast ignition scheme[J]. Phys. Plasmas,2016,23(8).
APA Yu, Changhai.,Deng, Aihua.,Tian, Ye.,Li, Wentao.,Wang, Wentao.,...&michaeljs_liu@siom.ac.cn.(2016).Enhanced hole boring with two-color relativistic laser pulses in the fast ignition scheme.Phys. Plasmas,23(8).
MLA Yu, Changhai,et al."Enhanced hole boring with two-color relativistic laser pulses in the fast ignition scheme".Phys. Plasmas 23.8(2016).
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