Further Radiochemical Studies of Fission of the U236* Compound Nucleus
Harry G. Hicks, H.B. Levy, W. E. Nervik, P. C. Stevenson, J.B. Niday, Jerawan Armstrong
Abstract
Harry G. Hicks, H.B. Levy, W. E. Nervik, P. C. Stevenson, J.B. Niday, Jerawan Armstrong
Abstract
Fission-product yields relative to the fission yield of ${\mathrm{Mo}}^{99}$ were measured for the fission of ${\mathrm{Th}}^{232}$ with ${\mathrm{He}}^{4}$ ions of energies ranging from threshold to 45 MeV and for the fission of ${\mathrm{U}}^{235}$ with 14-MeV neutrons. The linear relationships between fission yields predicted by the two-mode fission hypothesis and previously observed for fission of ${\mathrm{U}}^{236*}$ at low excitation energies break down at the higher energies in many cases. The fission yield of ${\mathrm{Mo}}^{99}$ and the total fission cross section were evaluated as a function of ${\mathrm{He}}^{4}$ ion energy.
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Fission-product yields relative to the fission yield of ${\mathrm{Mo}}^{99}$ were measured for the fission of ${\mathrm{Th}}^{232}$ with ${\mathrm{He}}^{4}$ ions of energies ranging from threshold to 45 MeV and for the fission of ${\mathrm{U}}^{235}$ with 14-MeV neutrons. The linear relationships between fission yields predicted by the two-mode fission hypothesis and previously observed for fission of ${\mathrm{U}}^{236*}$ at low excitation energies break down at the higher energies in many cases. The fission yield of ${\mathrm{Mo}}^{99}$ and the total fission cross section were evaluated as a function of ${\mathrm{He}}^{4}$ ion energy.
Key concepts: Fission, Fission product yield, Cluster decay, Cold fission, Fast fission, Physics, Nuclear physics, Yield (engineering)