作者: M. Karny , R. K. Grzywacz , J. C. Batchelder , C. R. Bingham , C. J. Gross
DOI: 10.1103/PHYSREVLETT.90.012502
关键词:
摘要: Fine structure in proton emission from the $3.1(3)\text{ }\text{ }\ensuremath{\mu}\mathrm{s}$ activity of $^{\mathrm{145}}\mathrm{T}\mathrm{m}$ was discovered by using a novel technique digital processing overlapping recoil implantation and decay signals. Proton transitions to ground state $^{\mathrm{144}}\mathrm{E}\mathrm{r}$ its first excited ${2}^{+}$ at 0.33(1) MeV with branching ratio ${I}_{p}({2}^{+})=9.6\ifmmode\pm\else\textpm\fi{}1.5%$ were observed. The wave function process analyzed particle-core vibration coupling models.