AUTHOR=Xi Xiaofeng , Lv Chong , Ma Wenjun , Liu Fulong , Kong Defeng , Zhang Xiaopeng , Zhang Guoqiang , Sun Wei , He Chuangye , Deng Xiangai , Ma Zhiguo , Zhao Jiarui , Fu Changbo , Guo Bing TITLE=Deuterium–deuterium fusion in nanowire plasma driven with a nanosecond high-energy laser JOURNAL=Frontiers in Physics VOLUME=11 YEAR=2023 URL=https://www.frontiersin.org/journals/physics/articles/10.3389/fphy.2023.1212293 DOI=10.3389/fphy.2023.1212293 ISSN=2296-424X ABSTRACT=
Investigating the enhancement of the interaction between laser and plasma is crucial for fundamental and applied physics research studies based on laser-induced acceleration and nuclear reactions. The improvement of energy conversion efficiency resulting in increasing reaction yields has been extensively studied by the interaction of femtosecond (fs) or picosecond (ps) lasers with nanowire targets. However, the effects of nanosecond (ns) lasers interacting with nanowire targets on energy absorption and production yield remain unknown. To address this issue, we conducted a deuterium–deuterium fusion experiment based on the collision of two plasmas induced by the interaction of the kilo-Joule-level nanosecond laser with nanowire targets. The experimental results of neutron detection indicate that the yields of nanowire targets remain at the same level as those of planar targets. We have used the counter-streaming collisionless plasma model to perform a numerical analysis of the output of nuclear reaction products at the center-of-mass energy (