DOAJ Open Access 2024

Ultra-high charge electron acceleration for nuclear applications

Liming Chen Jie Feng Wenchao Yan Hao Xu Yaojun Li +4 lainnya

Abstrak

Ultra-intense laser-plasma wakefield accelerator possess several superior properties compared with the traditional radio-frequency accelerators. These characteristics include femtosecond duration, micro-source size, and ultra-dense beam density, result in highly advantageous for various important applications. In this paper, we reviewed the generation of ultra-intense and high charge electron beam based on laser-plasma acceleration and its nuclear applications in Shanghai Jiao Tong University, including the production of 10 s nC charge beams, the generation of ultra-high flux neutron source on the order of 1019 n/cm2/s, and the excitation of nuclear isomers with the peak efficiency on the order of 1015 particle/s. This laser driving ultra-dense electron source, in conjunction with the plasma environment, presents immense potential in addressing critical problems in astrophysics, and facilitating various nuclear applications. Based on above progress in nuclear astrophysics, a new research plateform about laboratory astrophysics with a 2.5 PW laser will be constructed in TDLI institute.

Penulis (9)

L

Liming Chen

J

Jie Feng

W

Wenchao Yan

H

Hao Xu

Y

Yaojun Li

W

Wenzhao Wang

X

Xulei Ge

X

Xiaojun Huang

J

Jie Zhang

Format Sitasi

Chen, L., Feng, J., Yan, W., Xu, H., Li, Y., Wang, W. et al. (2024). Ultra-high charge electron acceleration for nuclear applications. https://doi.org/10.1016/j.fpp.2024.100071

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Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.1016/j.fpp.2024.100071
Akses
Open Access ✓