The angular distributions of alpha particles emitted from the H-3(d, alpha)n reaction were measured at 7.5 degrees intervals from 60 degrees to 165 degrees for incoming deuteron energies of 100, 150, and 200 keV using 50 and 80 mu g/cm(2) thick TiT targets. The overall uncertainty of 0.16% of the data made it possible to determine Legendre-polynomial coefficients up to L = 2. The results are compared with an R-matrix parameterization. The measured angular anisotropies present the first experimental evidence of D-wave contributions to the cross section in the vicinity of the J(pi) = 3/2(+) S-wave resonance in He-5.
The angular distributions of a particles emitted from theHðd;aÞn reaction were measured at 7.5 8 intervals from 608 to 1658 for incoming deuteron energies of 100, 150, and 200 keV using 50 and 80 mg/cm thick TiT targets. The overall uncertainty of 0.16% of the data made it possible to determine Legendrepolynomial coefficients up toL 1⁄4 2. The results are compared with an R-matrix parameterization. The measured angular anisotropies present the first experimental evidence ofD-wave contributions to the cross section in the vicinity of the J 1⁄4 2 þ S-wave resonance in He.
The angular distributions of \(\) particles emitted from the \(\) reaction were measured at 7.5\(\) intervals from 60\(\) to \(\) for incoming deuteron energies of 100, 150, and 200 keV using 50 and 80 \(\)g/cm\(\) thick TiT targets. The overall uncertainty of 0.16% of the data made it possible to determine Legendre-polynomial coefficients up to \(\). The results are compared with an \(\)-matrix parameterization. The measured angular anisotropies present the first experimental evidence of \(\)-wave contributions to the cross section in the vicinity of the \(\)\(\)-wave resonance in \(\)He.