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Acceleration of Protons from a Double-Layer or Multi-Ion-Mixed Foil Irradiated by Ultraintense Lasers

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【作者】 王伟民盛政明於陆勒李玉同KAWATA Shigeo张杰

【Author】 WANG Weimin~3,SHENG Zhengming~(1,2),YU Lule LI Yutong,KAWATA Shigeo~3,ZHANG Jie 1Beijing National Laboratory of Condensed Matter Physics,Institute of Physics,CAS, Beijing 100190,China 2Department of Physics,Shanghai Jiao Tong University,Shanghai 200240,China 3Graduate School of Engineering,Utsunomiya University,7-1-2 Yohtoh, Utsunomiya 321-8585,Japan

【机构】 Beijing National Laboratory of Condensed Matter Physics,Institute of Physics,CASGraduate School of Engineering,Utsunomiya UniversityDepartment of Physics,Shanghai Jiao Tong University

【摘要】 <正> Acceleration of protons by the radiation pressure of a circularly polarized laser pulsewith the intensity up to 1021 W/cm2 from a double-layer or multi-ion-mixed thin foil is investigatedby two-dimensional particle-in-cell simulations. The double-layer foil is composed of a heavy ionlayer and a proton layer. It is found that the radiation pressure acceleration can be classifiedinto three regimes according to the laser intensity due to the different critical intensities for lasertransparency with different ion species. When the laser intensity is moderately high, the laserpushes the electrons neither so slowly nor so quickly that the protons can catch up with theelectrons, while the heavy ions cannot. Therefore, the protons can be accelerated efficiently. Theproton beam generated from the double-layer foil is of better quality and higher energy than thatfrom a pure proton foil with the same areal electron density. When the laser intensity is relativelylow, both the protons and heavy ions are accelerated together, which is not favorable to the protonacceleration. When the laser intensity is relatively high, neither the heavy ions nor the protonscan be accelerated efficiently due to the laser transparency through the target.

【Abstract】 Acceleration of protons by the radiation pressure of a circularly polarized laser pulse with the intensity up to 1021 W/cm2 from a double-layer or multi-ion-mixed thin foil is investigated by two-dimensional particle-in-cell simulations. The double-layer foil is composed of a heavy ion layer and a proton layer. It is found that the radiation pressure acceleration can be classified into three regimes according to the laser intensity due to the different critical intensities for laser transparency with different ion species. When the laser intensity is moderately high, the laser pushes the electrons neither so slowly nor so quickly that the protons can catch up with the electrons, while the heavy ions cannot. Therefore, the protons can be accelerated efficiently. The proton beam generated from the double-layer foil is of better quality and higher energy than that from a pure proton foil with the same areal electron density. When the laser intensity is relatively low, both the protons and heavy ions are accelerated together, which is not favorable to the proton acceleration. When the laser intensity is relatively high, neither the heavy ions nor the protons can be accelerated efficiently due to the laser transparency through the target.

【基金】 supported in part by National Natural Science Foundation of China (Nos. 10734130, 10925421, 10935002, 10974250);the National High-Tech ICF Committee in China and the National Basic Research Program of China (Nos. 2007CB815100, 2009GB105002);the JSPS-CAS Core-University Program on Plasma and Nuclear Fusion, and CORE (Center for Optical Research and Education) at Utsunomiya University Japan
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2010年03期
  • 【分类号】TN24
  • 【被引频次】1
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