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Asymmetric ion acceleration in laser-produced magnetized collisionless shocks
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作者 Tianyi Zhang Ao Guo +8 位作者 Huibo Tang Guangyue Hu Kai Huang Shuoting Shao Shunyi Yang Jiayin Xie Gaoyuan Peng Peng E Quanming Lu 《Matter and Radiation at Extremes》 2026年第2期65-73,共9页
Quasi-hemispherical magnetized collisionless shocks have been generated at the SG-II laser facility through the interaction between a laserproduced supersonic plasma flow and a magnetized ambient plasma,exhibiting an ... Quasi-hemispherical magnetized collisionless shocks have been generated at the SG-II laser facility through the interaction between a laserproduced supersonic plasma flow and a magnetized ambient plasma,exhibiting an angular asymmetric shock profile accompanied by asymmetric ion acceleration.We have conducted test particle simulations using the electromagnetic fields derived from 2D MHD simulations to investigate the asymmetry of ion acceleration.The simulations reproduce the angular asymmetry of the shock and the ion acceleration observed in experiments.The results indicate that shock drift acceleration is the primary mechanism for ion energization in the present quasiperpendicular magnetized shock.The asymmetric shock structure caused by nonuniform ambient plasma forms an asymmetric accelerated electric field,ultimately leading to angular asymmetric ion acceleration,which is consistent with space observations and our experimental results.Our study provides a plausible explanation for the discrepancies reported in previous ion acceleration experiments,and could contribute to understanding of the collisionless shock acceleration. 展开更多
关键词 test particle simulations electromagnetic fields d mhd simulations asymmetric ion acceleration supersonic plasma flow laser produced magnetized collisionless shocks angular asymmetric shock profile asymmetric ion accelerationwe
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