Published June 1978 | Version v1
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Four-body model of the four-nucleon system

Description

Using a nonrelativistic field theoretic formalism a soluble model of the four-nucleon system is developed and solved numerically. Two- and three-body scattering proceeds through intermediate quasiparticles and the resulting T-matrices are separable in momentum space and satisfy two- and three-body unitarity. The 2+2 subamplitudes are treated exactly by the convolution method. The resulting four-body equations reduce to single variable integral equations following partial wave decomposition and can be solved numerically by rotation of contour together with matrix inversion. A complete phase shift calculation is performed for the isospin triplet interaction. The differential cross sections for all two-to-two processes initiated by p + 3He, n + 3H and d + d are compared with experiment for energies up to 25 MeV in the center of mass. Total elastic and reaction cross sections for the processes initiated by n + 3H are also calculated and compared with experimental data

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS., PC A04/MF A01.

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Additional details

Additional titles

Augmented title (English)
Phase shift total and differential cross sections, up to 25 MeV, scattering amplitudes

Publishing Information

Imprint Pagination
58 p.
Report number
ORO--5126-39