Enhanced Fast Electron Transport with Tapered Cone in Fast Ignition
ID:85 View Protection:ATTENDEE Updated Time:2025-04-03 14:22:35 Hits:278 Oral Presentation

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Abstract
We demonstrate a scheme for enhanced fast electron transport in fast ignition by using a tapered cone. By simulating the interaction of relativistic ps laser pulse with a gold cone via two-dimensional partical-in-cell (PIC) simulation, we find that the tapered cone suppresses longitudinal sheath field generation compared to the traditionally used flat-topped cone, while enhancing transverse sheath fields. This configuration exhibits advantages in guiding low-energy fast electrons and suppression of their lateral divergence during transmission into high-density targets. As the cone insertion depth into the target increases, the advantage of tapered cone is weakened. We further explore the effects of material and plasma density and laser intensity and find that the benefits of the tapered cone maintain under different parameters, though the critical insertion depth shifts accordingly.
 
Keywords
fast ignition,inertial confinement fusion,particle-in-cell simulation
Speaker
叶闿天
学生 中国科学院物理研究所

Submission Author
叶闿天 中国科学院物理研究所
ZhangTiehuai Chinese Academy of Sciences;Institute of Physics
WangWei-Min Renmin University of China
LiYu-tong CAS;Institute of Physics
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Institute of Applied Physics and Computational Mathematics, Beijing, China
Shaanxi Normal University, Xi’an, China
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陕西师范大学
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