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- W1987009420 abstract "Beryllium specimens containing 0.012-at.% $^{57}mathrm{Fe}$ were studied by Mossbauer spectroscopy in the temperature range from 75 to 1200 K. The changes of the recoil-free fraction, the second-order Doppler shift, the isomer shift, the quadrupole splitting, and the peak intensities are reported and interpreted as follows. (i) The effective impurity-host force constant ${ensuremath{lambda}}^{ensuremath{'}}$ is slightly smaller than the host-host force constant $ensuremath{lambda}(frac{{ensuremath{lambda}}^{ensuremath{'}}}{ensuremath{lambda}}ensuremath{sim}0.96)$ and an anharmonic behavior is observed at high temperature. (ii) The main part of the electric field gradient arises from $d$ electrons localized around the impurity atom in a virtual bound state near the Fermi level. (iii) At about 870 K, a short-range diffusion process occurs for iron impurities in as-quenched specimens with progressive annealing of quenched defects." @default.
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- W1987009420 date "1974-10-01" @default.
- W1987009420 modified "2023-09-25" @default.
- W1987009420 title "Properties of iron impurities in beryllium from Mössbauer studies" @default.
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- W1987009420 doi "https://doi.org/10.1103/physrevb.10.2661" @default.
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