English

Structure of the ^3He in Backward Elastic p ^3He-Scattering

Nuclear Theory 2009-10-31 v2

Abstract

Backward elastic p3Hep ^3He-scattering at incident proton kinetic energies Tp>1T_p>1 GeV is investigated in the framework of the np-pair transfer mechanism and triangular diagram of one-pion exchange with a subprocess pd3Heπ0pd\to ^3He\pi^0 using a realistic three-body wave function of the 3He^3He nucleus. It is found that the npnp-pair transfer mechanism dominates owing to a rich high momentum component of the 3He^3He wave function. We show that the experimental cross section of this process is defined mainly by the values of the Faddeev component of the 3He^3He wave function, ϕ23(q23,p1)\phi ^{23}({\bf q}_{23}, {\bf p}_1), at high relative momenta q23>0.6GeV/cq_{23}> 0.6 GeV/c of the NN-pair in the 1S0^1S_0-state and at low spectator momenta p10.1p_1\leq 0.1 GeV/c. The spin-spin correlation parameter is calculated in the framework of the dominating mechanism for the case of polarized target and beam. Rescatterings in the initial and final states are taken into account. Comparison with the pddppd\to dp process is performed.

Cite

@article{arxiv.nucl-th/9810028,
  title  = {Structure of the ^3He in Backward Elastic p ^3He-Scattering},
  author = {Yu. N. Uzikov},
  journal= {arXiv preprint arXiv:nucl-th/9810028},
  year   = {2009}
}

Comments

28 pages including 14 Postscript figures, Latex