Title of article :
An inversion procedure for coupled-channel scattering: determining the deuteron-nucleus tensor interaction Original Research Article
Author/Authors :
S.G. Cooper، نويسنده , , V.I. Kukulin، نويسنده , , R.S. Mackintosh، نويسنده , , V.N. Pomerantsev، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
23
From page :
187
To page :
209
Abstract :
A practical S-matrix to potential inversion procedure which applies to coupled-channel scattering is presented. The inversion technique is described in the context of the problem of determining a tensor interaction View the MathML source which exactly reproduces non-diagonal View the MathML source for spin one projectiles. It also applies to spin-View the MathML source plus spin-View the MathML source scattering. The method is a generalization of the iterative-perturbative, IP, method. In this paper, spin-1 IP inversion is tested and evaluated and the variation of the potential is investigated for cases where there is insufficient information to define the potential uniquely. Since View the MathML source interactions must be presumed to be present in many applications, we examine the potentials which result when the S-matrix is generated from a View the MathML source interaction. The spin-1 IP algorithm can be incorporated within a direct observable-to-potential inversion procedure to provide an efficient alternative to standard phenomenology. We evaluate its application to finding a multi-component potential, including a View the MathML source interaction, fitting multi-energy σ, View the MathML source, View the MathML source, View the MathML source and View the MathML source data for the scattering of spin-1 nuclei from spin-zero target. It is applicable to other channel spin 1 cases.
Keywords :
Nuclear tensor interaction , Deuteron scattering , Tensor analysing power , Coupled channel inversion , Inverse scattering
Journal title :
Nuclear physics A
Serial Year :
2000
Journal title :
Nuclear physics A
Record number :
1192175
Link To Document :
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