• DocumentCode
    2020907
  • Title

    Cold fusion prospects

  • Author

    McNally, J. Rand, Jr.

  • fYear
    1989
  • fDate
    2-6 Oct 1989
  • Firstpage
    113
  • Abstract
    The requirements for cold fusion may include, but are not limited to the following: a nuclear mass-energy resonance with an excitation level in the compound nucleus or in two output nuclei; very high density; a large neutron capture cross-section isotope and a neutron-rich isotope; overlapping de Broglie interaction wavelengths; nuclear spin and polarizability compatibility; and/or catalytic action by a passing electron, neutron, or gamma ray. The most notable nuclear mass-energy resonance is D+T=5He* (16.70 MeV), which occurs 60 keV below the 16.76-MeV excitation stage in 5He* and has a maximum cross-section of 5 b at 60-keV center-of-mass energy of D+T. However, the level width is 100 keV,±50 keV, so that perhaps some cold fusion of D+T could be produced at very low energies in dense media. High density enhances the reaction rate. It has been estimated that pycnonuclear fusion of D+T and D+D can ignite at densities of 10 4 and 105 g/cm3, respectively. Other prospects (including the cold fusion of D+D) are discussed
  • Keywords
    electrochemistry; nuclear fusion; catalytic action; cold fusion; compound nucleus; excitation level; neutron capture cross-section isotope; nuclear mass-energy resonance; nuclear spin; overlapping de Broglie interaction wavelengths; polarizability; pycnonuclear fusion; Electrons; Energy capture; Energy states; Ignition; Isotopes; Neutrons; Nuclear physics; Polarization; Resonance; Temperature;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Fusion Engineering, 1989. Proceedings., IEEE Thirteenth Symposium on
  • Conference_Location
    Knoxville, TN
  • Type

    conf

  • DOI
    10.1109/FUSION.1989.102184
  • Filename
    102184