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- W2165688118 abstract "Gold (99.9999% purity) was irradiated by 2.5-MeV electrons below 2 K. Damage production was monitored by measuring the dc resistivity of the gold. The production rate $frac{densuremath{rho}}{densuremath{Phi}}$ (change in resistivity per integrated electron flux) was found to (a) be enhanced by the presence of quenched vacancies at extremely low values of integrated flux, (b) be attenuated by the presence of quenched vacancies at higher values of integrated flux, (c) decrease with increasing $ensuremath{Phi}$ particularly at the lowest values of $ensuremath{Phi}$, and (d) increase with increasing $frac{densuremath{Phi}}{mathrm{dt}}$ (beam flux). Thermal recovery of resistivity was observed as low as 2.3 K. The recovery in the range 2.3-30 K was found to (a) be enhanced by the presence of quenched vacancies, (b) be attenuated by the presence of silver impurities, and (c) increase with increasing $ensuremath{Phi}$. These observations are consistent with the hypothesis that the interstitial in gold undergoes long-range migration either during electron irradiation at 1.7 K or during annealing at 1.95 K." @default.
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- W2165688118 date "1973-10-15" @default.
- W2165688118 modified "2023-09-25" @default.
- W2165688118 title "Electron Irradiation of Gold Below 2 K" @default.
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- W2165688118 doi "https://doi.org/10.1103/physrevb.8.3616" @default.
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