The partial cross-sections for photodisintegration of the alpha-particle are calculated in the usual first-order perturbation theory approximation, utilizing the symmetry properties of the wave functions of the alpha-particle and of the various product nuclei. From these results the cross-sections for radiative capture of protons by 3H, neutrons by 3He, and deuterons by deuterons, can be deduced. It is found that (a) the yield of gamma-rays from the 3H(py) 4He reaction should increase with bombarding energy up to several MeV; (b) the radiative capture cross-section of 3He for thermal neutrons should be negligible; and (c) the radiative crosssection for the D + D reaction should be smaller than that for the T + P reaction at corresponding energies by a factor of about 10-3. Conclusion (a) is discussed in the light of recent experiments at Los Alamos, which purport to establish the existence of an excited state of the alpha-particle.
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Flowers et al. (1951) studied this question.
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