Experimental Demonstration of Laser Guiding and Wakefield Acceleration in a Curved Plasma Channel
2023年5月23日·,,,,,,,,,,,
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0 分钟阅读时长
Xinzhe Zhu
Corresponding
,Boyuan Li
Feng Liu
Jianlong Li
Zewu Bi
Xulei Ge
Hongyang Deng
Ziyang Zhang
Peilin Cui,
Lin Lu
Wenchao Yan
Xiaohui Yuan
Liming Chen
曹强
Zhenyu Liu
Zhengming Sheng
Min Chen
Jie Zhang

摘要
Curved plasma channels have been proposed to guide intense lasers for various applications, such as x-ray laser emission, compact synchrotron radiation, and multistage laser wakefield acceleration [e.g. J. Luo et al.,Phys. Rev. Lett. 120, 154801 (2018)]. Here, a carefully designed experiment shows evidences of intense laser guidance and wakefield acceleration in a centimeter-scale curved plasma channel. Both experiments and simulations indicate that when the channel curvature radius is gradually increased and the laser incidence offset is optimized, the transverse oscillation of the laser beam can be mitigated, and the stably guided laser pulse excites wakefields and accelerates electrons along the curved plasma channel to a maximum energy of 0.7 GeV. Our results also show that such a channel exhibits good potential for seamless multistage laser wakefield acceleration.
类型
出版物
Physical Review Letters
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教授
教授、博导,泰山学者青年专家、崂山学者、学科带头人及武汉大学兼职教授。先后任职于北京理工大学、南洋理工大学、武汉大学及青岛科技大学。他长期致力于超快激光与物质相互作用研究,提出基于共振吸收的飞秒激光高效选择性加工新方法,成功应用于光子晶体加工、油水分离器制造等领域,展现出极高的工业加工能力;同时,成功验证了飞秒激光海水制氢假设,为万亿美元级的大规模制氢工程化奠定了实验基础。其科研成果丰硕,在Nanoscale、APL等主流SCI期刊发表论文40余篇,总被引超1100次;获国家发明专利18项(多项正推进转化)。主持国自然面上项目、先导科技专项子课题等16项,并作为骨干参与多项国家重大科研计划。
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