NUCLEAR PHYSICS |
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Anomalous Neutron Burst Emissions in Deuterium-Loaded Metals: Nuclear Reaction at Normal Temperature |
JIANG Song-Sheng**, XU Xiao-Ming, ZHU Li-Qun, GU Shao-Gang, RUAN Xi-Chao, HE Ming, QI Bu-Jia |
China Institute of Atomic Energy, P. O. Box 275 (49), Beijing 102413
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Cite this article: |
JIANG Song-Sheng, XU Xiao-Ming, ZHU Li-Qun et al 2012 Chin. Phys. Lett. 29 112501 |
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Abstract Conventional nuclear fusion occurs in plasma at temperatures greater than 107°C or when energy higher than 10 keV is applied. We report a new result of anomalous neutron emission, also called cascade neutron burst emission, from deuterium-loaded titanium and uranium deuteride samples at room temperature. The number of neutrons in the large bursts is measured as up to 2800 in less than a 64-μs interval. We suggest that the anomalous cascade neutron bursts are correlated with deuterium-loaded metals and probably the result of nuclear reactions occurring in the samples.
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Received: 13 June 2012
Published: 28 November 2012
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