Abstract
The $^{96}\mathrm{Mo}(p,d)^{95}\mathrm{Mo}$ reaction has been studied with a $50\phantom{\rule{0.3em}{0ex}}\mathrm{MeV}$ polarized beam. Differential cross sections and analyzing powers have been measured for investigating the level structure in $^{95}\mathrm{Mo}$ up to the excitation energy of $5.8\phantom{\rule{0.3em}{0ex}}\mathrm{MeV}$. The standard distorted-wave Born approximation theory provides transfer angular momentum values and spectroscopic factors for the excited states. Furthermore, the theoretical analysis is extended also for the continuum region with a direct reaction model. Experimental double differential cross sections for continuum spectra are predicted well by adopting an asymmetric Lorentzian form for the response function in the distorted wave Born approximation based cross section calculations.
Published Version
Talk to us
Join us for a 30 min session where you can share your feedback and ask us any queries you have