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THEORY OF THE PHOTOFISSION OF DEUTERONS AT AVERAGE ENERGIES (in German)

Journal Article · · Z. Physik
DOI:https://doi.org/10.1007/BF01340270· OSTI ID:4283693
>The differential cross section for the photodisintegration of the deuteron is calculated on the basis of a Phenomenological theory for energies up to 80 Mev, assuming the validity of Siegert's theorem. The Hulthea wave function with a 4% D-state admixture for the ground state is used. The final state potential is approximated by a square-well of a given radius, the depth of which is calculated from the phase-shifts given by Marshak. For both the ground state and the final stutes a hard-core of radius 0.4 x 10/sup -13/ cm is introduced. Only the electric and megnetic dipole transitions are considered. For the isotropic term a fairly constant value is obtained which agrees with the experimentally observed energy-dependence but is about 20% smaller than the experimental value. The coefficient of the sin/sup 2/ THETA term agrees well with the experimental results. (auth)
Research Organization:
Univ. of Heidelberg, Ger.
Sponsoring Organization:
USDOE
NSA Number:
NSA-13-010515
OSTI ID:
4283693
Journal Information:
Z. Physik, Journal Name: Z. Physik Vol. Vol: 153
Country of Publication:
Country unknown/Code not available
Language:
German

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