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- W1648893419 abstract "We have studied radiation damage in KCl crystals doped with Sr++ using thermoionic-current techniques (ITC) and optical-absorption measurements. Analysing the radiation damage due to three different gamma-ray exposures, we confirmed the results obtained by other authors, namely the gamma irradiation createsF-type orV-type colour centres and destroys a fraction of impurity-vacancy dipoles. Fastneutron irradiation added to the gamma irradiation increases the efficiency of destruction of dipoles. The fast neutrons also provoke the appearance of a second ITC peak at temperatures near 123°K, which is unstable and disappears in a few days. On the other hand thermal neutrons bombarding the samples together with fast neutrons and gamma-rays leave unchanged the impurity-vacancy dipole concentration obtained after the gamma plus fast neutron irradiation. With thermal neutrons there is a high background current, and the peak resolution is only possible when thermally and electrostatically polarizable electrical carriers have largely disappeared. For this reason it is impossible to compare the 123°K peak obtained with and without thermal neutrons." @default.
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- W1648893419 date "1975-01-01" @default.
- W1648893419 modified "2023-09-25" @default.
- W1648893419 title "Ionic thermocurrent and optical-absorption measurements in KCl∶Sr under reactor irradiation" @default.
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- W1648893419 doi "https://doi.org/10.1007/bf02737670" @default.
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