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- W2014146514 abstract "Abstract Simultaneous measurements of the recovery of stored energy and electrical resistivity were performed in a differential heat flux calorimeter after neutron irradiation at 4.6 °K (linear rising of temperature from 6 °K to 250 °K, with variable velocity between 0.3°K/min - 2°K/min). At each main recovery stage the heating was interrupted and repeated after cooling down to 6°K. With this method the change of specific heat due to the defects could be determined. The contribution of the vibrational energy change to the stored energy is not negligible. Results: (1) Defects annealing in stage I (4°K < T < 55°K) ΔQ/Δρ = 42.6/21.4 Ws/Mol. nΩcm. Within experimental error no effect in specific heat. (2) Defects annealing in stage I1 and part of stage III (65°K < T < 250°K) ΔQ/ΔΔ = 114/31 Ws/nΩcm. Mol, ΔC/C. Δρ = + 8/31 per cent/nΩcm, where ΔQ is the stored energy, Δρ the change of residual resistivity and ΔC the change in specific heat. The measured changes of the Debye temperature are in agreement with those of the characteristic temperature in the Grüneisen-model of the electrical resistivity. The ratios of the stored energy to the residual resistivity in the diverse recovery stages are discussed." @default.
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- W2014146514 title "Stored energy and electrical resistivity of frenkel defects in copper" @default.
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- W2014146514 doi "https://doi.org/10.1080/00337576908235586" @default.
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