Prompt neutron emission from the spontaneous fission of Md 260
J. F. Wild, J. van Aarle, W. Westmeier, R. W. Lougheed, E.K. Hulet, K. J. Moody, R. J. Dougan, E. Koop, RE Glaser, R. Brandt, P. Patzelt
Abstract
J. F. Wild, J. van Aarle, W. Westmeier, R. W. Lougheed, E.K. Hulet, K. J. Moody, R. J. Dougan, E. Koop, RE Glaser, R. Brandt, P. Patzelt
Abstract
We have made the first measurement of the number of neutrons emitted from the spontaneous fission of a nuclide in which very high fragment energies dominate the fission process. In bombardments of $^{254}\mathrm{Es}$, we produced a large sample of 28-d $^{260}\mathrm{Md}$, which was neutron counted in a 1-m-diameter spherical tank containing a Gd-doped scintillator solution. The average number of neutrons emitted per fission is only 2.58\ifmmode\pm\else\textpm\fi{}0.11, substantially less than for other actinides. A linear dependence of neutron multiplicity on fragment-excitation energy is observed to the highest values of total kinetic energy.
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We have made the first measurement of the number of neutrons emitted from the spontaneous fission of a nuclide in which very high fragment energies dominate the fission process. In bombardments of $^{254}\mathrm{Es}$, we produced a large sample of 28-d $^{260}\mathrm{Md}$, which was neutron counted in a 1-m-diameter spherical tank containing a Gd-doped scintillator solution. The average number of neutrons emitted per fission is only 2.58\ifmmode\pm\else\textpm\fi{}0.11, substantially less than for other actinides. A linear dependence of neutron multiplicity on fragment-excitation energy is observed to the highest values of total kinetic energy.
Key concepts: Fission, Physics, Neutron, Neutron emission, Nuclear physics, Spontaneous fission, Prompt neutron, Neutron temperature