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水中碳弧的异常放电现象
引用本文:王志刚,江兴流. 水中碳弧的异常放电现象[J]. 原子核物理评论, 2004, 21(4): 428-429. DOI: 10.11804/NuclPhysRev.21.04.428
作者姓名:王志刚  江兴流
作者单位:北京航空航天大学应用数理系 北京100083;
基金项目:国家自然科学基金资助项目(19455001 E)~~
摘    要:放电过程中的磁收缩效应产生超高密度的等离子体细丝,有可能发生核聚变反应.在高纯水中,用光谱纯的碳棒作电极,进行低压(-20V)电弧放电实验,收集放电产生的磁屑,并用离子光谱法和中子活化法进行分析,观察到碳屑中铁的含量从几个10-6增加到几百、上千个10-6,而且,同位素的丰度与天然铁的丰度有所变化. There exist various phenomena for electric discharge, such as radiation with wide bands, collective acceleration, electron degeneracy and "linear atom", etc. which occur in dense state of matter.The arcing was created in the gap between two purified carbon rods in deionised water. The original carbon contained a few millionth iron, and the detritus contained up to thousands millionth iron based on the analysis by an (atomic) emission spectroscope (AES). It is deduced that the plasma filaments...

关 键 词:电弧放电   磁自收缩   聚变反应
文章编号:1007-4627(2004)04-0428-02
收稿时间:1900-01-01
修稿时间:2004-08-16

Nuclear Transmutation Induced by Carbon Arcing under Water
WANG Zhi-gang,JIANG Xing-liu. Nuclear Transmutation Induced by Carbon Arcing under Water[J]. Nuclear Physics Review, 2004, 21(4): 428-429. DOI: 10.11804/NuclPhysRev.21.04.428
Authors:WANG Zhi-gang  JIANG Xing-liu
Affiliation:Department of Mathematics and Physics; Beijing University of Aeronautics and Astronautics; Beijing 100083; China
Abstract:There exist various phenomena for electric discharge, such as radiation with wide bands, collective acceleration, electron degeneracy and "linear atom", etc. which occur in dense state of matter.The arcing was created in the gap between two purified carbon rods in deionised water. The original carbon contained a few millionth iron, and the detritus contained up to thousands millionth iron based on the analysis by an (atomic) emission spectroscope (AES). It is deduced that the plasma filaments with superdense matter due to micropinch effect make nuclear transmutation possible. The excess of iron isotope~(58)Fe comparing with natural iron was determined by neutron activation analysis.
Keywords:arc discharge  magnetic self-pinch  fusion reaction
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