Abstract

The energy levels in $^{144}\mathrm{Nd}$ have been studied by means of the $^{143}\mathrm{Nd}(d,p)$ reaction at ${E}_{d}=25$ MeV and the $^{146}\mathrm{Nd}(p,t)$ reaction at ${E}_{p}=31$ MeV. Angular distributions, values for the transferred angular momenta, and spectroscopic and enhancement factors based on distorted-wave Born approximation calculations have been obtained for $\ensuremath{\approx}30$ states. The ($d,p$) spectroscopic strengths have been compared with the results of a calculation based on a two-particle core coupling model.NUCLEAR REACTIONS $^{143}\mathrm{Nd}(d,p)$, $E=25$ MeV; measured $\ensuremath{\sigma}(\ensuremath{\theta})$. $^{146}\mathrm{Nd}(p,t)$, $E=31$ MeV; measured $\ensuremath{\sigma}(\ensuremath{\theta})$. $^{144}\mathrm{Nd}$ deduced levels, $L$, $S$. DWBA analysis.

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