Capture of Slow Neutrons
- 1 April 1936
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 49 (7) , 519-531
- https://doi.org/10.1103/physrev.49.519
Abstract
Current theories of the large cross sections of slow neutrons are contradicted by frequent absence of strong scattering in good absorbers as well as the existence of resonance bands. These facts can be accounted for by supposing that in addition to the usual effect there exist transitions to virtual excitation states of the nucleus in which not only the captured neutron but, in addition to this, one of the particles of the original nucleus is in an excited state. Radiation damping due to the emission of -rays broadens the resonance and reduces scattering in comparison with absorption by a large factor. Interaction with the nucleus is most probable through the part of the incident wave. The higher the resonance region, the smaller will be the absorption. For a resonance region at 50 volts the cross section at resonance may be as high as and 0.5× at thermal energy. The estimated probability of having a nuclear level in the low energy region is sufficiently high to make the explanation reasonable. Temperature effects and absorption of filtered radiation point to the existence of bands which fit in with the present theory.
Keywords
This publication has 26 references indexed in Scilit:
- Neutrons of thermal energiesProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1936
- Scattering of Slow NeutronsPhysical Review B, 1935
- Radiative Capture of Protons by CarbonPhysical Review B, 1935
- On the slowing down of neutrons in various substances containing hydrogenProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1935
- Theory of Disintegration of Nuclei by NeutronsPhysical Review B, 1935
- Radiation Damping and the Polarization of Fluorescence RadiationPhysical Review B, 1934
- Zur Theorie der ResonanzfluoreszenzAnnalen der Physik, 1931
- Berechnung der nat rlichen Linienbreite auf Grund der Diracschen LichttheorieThe European Physical Journal A, 1930
- Perturbations in Molecules and The Theory of Predissociation and Diffuse SpectraPhysical Review B, 1929
- Bildung und Zerfall von Molek lenThe European Physical Journal A, 1925