In one minute
Yeong Kim develops Bose-Einstein condensation nuclear fusion theory to explain deuteron-induced nuclear reactions seen in metals in electrolysis and gas-loading experiments. The observed reaction rates cannot be explained by the conventional theory of nuclear reactions in free space. It rests on one conventional concept: deuterons forming a Bose-Einstein condensate inside the metal. The theory explains, qualitatively or quantitatively, all ten experimental observations it lists from electrolysis and gas loading. Fusion energy can pass to the metal through its stopping power, without invoking lattice vibrations, and anomalous tritium production follows from a sub-threshold resonance reaction. Key experiments to test its predictions are proposed.
Bose-Einstein Condensate Theory of Deuteron Fusion in Metal
- Yeong E. Kim(Author)
Publication and identifiers
- Work type
- Paper
- Year
- 2011
- Identifiers
- Original source links
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- Recorded rights status
- Linking only
- Rights holder
- Journal of Condensed Matter Nuclear Science
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- Original title
- Bose-Einstein Condensate Theory of Deuteron Fusion in Metal
- Attribution
- Yeong E. Kim(Author)
- Year
- 2011
- Identifiers
- Original source links