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Target Density Effects on Charge Transfer of Laser-Accelerated Carbon Ions in Dense Plasma

Authors :
Jieru Ren
Bubo Ma
Lirong Liu
Wenqing Wei
Benzheng Chen
Shizheng Zhang
Hao Xu
Zhongmin Hu
Fangfang Li
Xing Wang
Shuai Yin
Jianhua Feng
Xianming Zhou
Yifang Gao
Yuan Li
Xiaohua Shi
Jianxing Li
Xueguang Ren
Zhongfeng Xu
Zhigang Deng
Wei Qi
Shaoyi Wang
Quanping Fan
Bo Cui
Weiwu Wang
Zongqiang Yuan
Jian Teng
Yuchi Wu
Zhurong Cao
Zongqing Zhao
Yuqiu Gu
Leifeng Cao
Shaoping Zhu
Rui Cheng
Yu Lei
Zhao Wang
Zexian Zhou
Guoqing Xiao
Hongwei Zhao
Dieter H. H. Hoffmann
Weimin Zhou
Yongtao Zhao
Source :
Physical Review Letters. 130
Publication Year :
2023
Publisher :
American Physical Society (APS), 2023.

Abstract

We report on charge state measurements of laser-accelerated carbon ions in the energy range of several MeV penetrating a dense partially ionized plasma. The plasma was generated by irradiation of a foam target with laser-induced hohlraum radiation in the soft X-ray regime. We used the tri-cellulose acetate (C$_{9}$H$_{16}$O$_{8}$) foam of 2 mg/cm$^{-3}$ density, and $1$-mm interaction length as target material. This kind of plasma is advantageous for high-precision measurements, due to good uniformity and long lifetime compared to the ion pulse length and the interaction duration. The plasma parameters were diagnosed to be T$_{e}$=17 eV and n$_{e}$=4 $\times$ 10$^{20}$ cm$^{-3}$. The average charge states passing through the plasma were observed to be higher than those predicted by the commonly-used semiempirical formula. Through solving the rate equations, we attribute the enhancement to the target density effects which will increase the ionization rates on one hand and reduce the electron capture rates on the other hand. In previsous measurement with partially ionized plasma from gas discharge and z-pinch to laser direct irradiation, no target density effects were ever demonstrated. For the first time, we were able to experimentally prove that target density effects start to play a significant role in plasma near the critical density of Nd-Glass laser radiation. The finding is important for heavy ion beam driven high energy density physics and fast ignitions.<br />Comment: 7 pages, 4 figures, 35 conferences

Details

ISSN :
10797114 and 00319007
Volume :
130
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi.dedup.....8285dbf399cfc079b48655a3b698de99
Full Text :
https://doi.org/10.1103/physrevlett.130.095101