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- W2081651004 abstract "$ensuremath{gamma}$ rays following slow-neutron capture in natural ruthenium have been studied. Spin and isotopic assignments for resonances have been made based on high- and low-energy $ensuremath{gamma}$-ray transitions. In the case of the product nuclei $^{100}mathrm{Ru}$- $^{102}mathrm{Ru}$, the present ($n,ensuremath{gamma}$) studies extend our knowledge of the level schemes to energies higher than previously available from $ensuremath{beta}$-decay studies of Rh and Tc isotopes. A notable feature of the data is a relatively high concentration of radiation strength between 6.5 and 7.0 MeV for both $^{100}mathrm{Ru}$ and $^{102}mathrm{Ru}$. $M1$ enhancement could be ascribed to a doorway state in neutron capture leading to spin-flip transitions of the ${g}_{frac{7}{2}}ensuremath{rightarrow}{g}_{frac{9}{2}}$ type.[NUCLEAR REACTIONS $^{99,101}mathrm{Ru}(n,ensuremath{gamma})$ ${E}_{n}=0.0253 mathrm{to} 230$ eV, deduced resonance spins, isotopic identifications, partial widths ${ensuremath{Gamma}}_{ensuremath{gamma}ensuremath{lambda}f}$; $^{100,102}mathrm{Ru}$ levels, spin, and parities.]" @default.
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- W2081651004 date "1974-05-01" @default.
- W2081651004 modified "2023-10-16" @default.
- W2081651004 title "Radiative decay of neutron resonant states in ruthenium" @default.
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- W2081651004 doi "https://doi.org/10.1103/physrevc.9.1978" @default.
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