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- W1973876350 abstract "Experiments have been carried out to determine the effect of lattice dislocations in pure copper single crystals on the de Haas-van Alphen (dHv A) scattering (Dingle) temperature $X$. The measurements were made on copper samples of measured dislocation density under stringent experimental conditions, including a magnetic field homogeneity of better than 2 ppm and an orientation of the sample symmetry direction along the field to within 0.05ifmmode^circelsetextdegreefi{}. The results for the [111] neck and belly orbits in copper showed a linear dependence of $X$ on the dislocation density $D$ over the range $Densuremath{simeq}0.5ifmmodetimeselsetexttimesfi{}{10}^{7} mathrm{to} 7ifmmodetimeselsetexttimesfi{}{10}^{7}$ ${mathrm{cm}}^{ensuremath{-}2}$, with slopes given by $frac{{X}_{n}}{D}ensuremath{simeq}0.32ifmmodetimeselsetexttimesfi{}{10}^{ensuremath{-}7}$ K ${mathrm{cm}}^{2}$ and $frac{{X}_{b}}{D}ensuremath{simeq}0.08ifmmodetimeselsetexttimesfi{}{10}^{ensuremath{-}7}$ K ${mathrm{cm}}^{2}$. Two approaches have been suggested to explain the results: (i) The scattering temperature is inversely proportional to the electron relaxation time and is therefore a direct measure of electron scattering from dislocations; (ii) $X$ is due to phase cancellation in the dHv A signal from orbits moving within the spatially varying elastic strain field of the dislocation array. The experimental results are discussed in terms of these two points of view." @default.
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- W1973876350 title "Dislocations and the de Haas-van Alphen Effect in Copper" @default.
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- W1973876350 doi "https://doi.org/10.1103/physrevb.7.667" @default.
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