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- W2247385196 abstract "We performed nuclear forward and inelastic scattering of synchrotron radiation by elemental Os utilizing the nuclear excited state of $^{187}mathrm{Os}$ which is otherwise inaccessible using any practical radioactive decay process. The lifetime of the excited state, $3.06(8)phantom{rule{4.pt}{0ex}}text{ns}$, and the energy of the transition, $9.778(3)phantom{rule{4.pt}{0ex}}text{keV}$, are refined. The nuclear quadrupole moment of the excited state, ${Q}_{3/2}=1.46(10)phantom{rule{4.pt}{0ex}}text{b}$, is determined. The density of phonon states for elemental Os, which is herein experimentally determined, suggests that the Os lattice is a model for the lattice dynamics of hcp-Fe. The combination of the low energy of the nuclear transition and the large nuclear mass leads to a high recoil free fraction, ${f}_{LM}=0.95(1)$, at room temperature, a large value that strongly supports the viability of nuclear resonance scattering as a reliable method to study electronic, magnetic, and elastic properties of Os compounds, including Os organometallics." @default.
- W2247385196 created "2016-06-24" @default.
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- W2247385196 date "2015-06-11" @default.
- W2247385196 modified "2023-10-18" @default.
- W2247385196 title "Nuclear resonant scattering of synchrotron radiation byOs187" @default.
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- W2247385196 doi "https://doi.org/10.1103/physrevb.91.224102" @default.
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