Short-laser-pulse-driven emission of energetic ions into a solid target from a surface layer spalled by a laser prepulse

被引:0
|
作者
A.G. Zhidkov
L.V. Zhigilei
A. Sasaki
T. Tajima
机构
[1] Advanced Photon Research Center,
[2] JAERI,undefined
[3] 25-1 Mii-minami-machi,undefined
[4] Neyagawa,undefined
[5] Osaka,undefined
[6] 572-0019,undefined
[7] Japan,undefined
[8] Department of Materials Science and Engineering,undefined
[9] University of Virginia,undefined
[10] Charlottesville,undefined
[11] Virginia 22903,undefined
[12] USA,undefined
[13] Lawrence Livermore National Laboratory,undefined
[14] L-441,undefined
[15] Livermore,undefined
[16] CA 94551,undefined
[17] USA,undefined
[18] General Physics Institute,undefined
[19] 117945,undefined
[20] Vavilov,undefined
[21] 38,undefined
[22] Moscow,undefined
[23] Russia,undefined
来源
Applied Physics A | 2001年 / 73卷
关键词
PACS: 79.20.Ds; 61.80.Az; 52.40; 02.70.Ns;
D O I
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中图分类号
学科分类号
摘要
An efficient emission of picosecond bunches of energetic protons and carbon ions from a thin layer spalled from a organic solid by a laser prepulse is demonstrated numerically. We combine the molecular dynamics technique and multi-component collisional particle-in-cell method with plasma ionization to simulate the laser spallation and ejection of a thin (∼20–30 nm) solid layer from an organic target and its further interaction with an intense femtosecond laser pulse. In spite of its small thickness, a layer produced by laser spallation efficiently absorbs ultrashort laser pulses with the generation of hot electrons that convert their energy to ion energy. The efficiency of the conversion of the laser energy to ions can be as high as 20%, and 10% to MeV ions. A transient electrostatic field created between the layer and surface of the target is up to 10 GV/cm.
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页码:741 / 747
页数:6
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