arXiv · nucl-th/9709026
Deuteron Disintegration by Protons in Kinematics of Quasi-Elastic Backward pd-Scattering
Abstract
The deuteron break-up exclusive reaction $p+d \to N(180^{\circ}) + (NN)(0^{\circ})$ is considered in the framework of the one-nucleon-exchange mechanism at the incident proton kinetic energy 0.2--2 GeV and the relative energy of nucleons in the forward going final NN-pair $E_{NN}=0$--20 MeV, that is close to the kinematical conditions of the planned experiment at COSY. The off-energy-shell effects resulting, in particular, in the node of the half-off-shell $^1S_0$-state partial NN-scattering amplitude and the role of higher partial waves in the subprocess $pN\to pN$ are analysed and found to be very important, especially for the reaction $p+d \to n(180^{\circ}) + (pp)(0^{\circ})$. The accuracy of some approximate relations between the cross sections of elastic $pd$-scattering and deuteron break-up is examined in the framework of the mechanism in question.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
A. V. Smirnov, Yu. N. Uzikov. 1997-09-13. Deuteron Disintegration by Protons in Kinematics of Quasi-Elastic Backward pd-Scattering. https://arxiv.org/abs/nucl-th/9709026
Cite the original work for its findings. Save a collection to share your selection of sources.