Dominance of hole-boring radiation pressure acceleration regime with thin ribbon of ionized solid hydrogen

被引:14
|
作者
Psikal, J. [1 ,2 ]
Matys, M. [1 ]
机构
[1] Czech Tech Univ, Fac Nucl Sci & Phys Engn, Prague, Czech Republic
[2] Czech Acad Sci, Inst Phys, ELI Beamlines Project, Prague, Czech Republic
关键词
laser-driven proton acceleration; hydrogen ribbon; hole boring; radiation pressure acceleration; particle-in-cell simulation; ION-ACCELERATION; LASER; PLASMAS; PHYSICS;
D O I
10.1088/1361-6587/aaa7fa
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Laser-driven proton acceleration from novel cryogenic hydrogen target of the thickness of tens of microns irradiated by multiPW laser pulse is investigated here for relevant laser parameters accessible in near future. It is demonstrated that the efficiency of proton acceleration from relatively thick hydrogen solid ribbon largely exceeds the acceleration efficiency for a thinner ionized plastic foil, which can be explained by enhanced hole boring (HB) driven by laser ponderomotive force in the case of light ions and lower target density. Three-dimensional particle-in-cell (PIC) simulations of laser pulse interaction with relatively thick hydrogen target show larger energies of protons accelerated in the target interior during the HB phase and reduced energies of protons accelerated from the rear side of the target by quasistatic electric field compared with the results obtained from two-dimensional PIC calculations. Linearly and circularly polarized multiPW laser pulses of duration exceeding 100 fs show similar performance in terms of proton acceleration from both the target interior as well as from the rear side of the target. When ultrashort pulse (similar to 30 fs) is assumed, the number of accelerated protons from the target interior is substantially reduced.
引用
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页数:11
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