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- W2080656153 abstract "We have carried out a model calculation of ultrasonic attenuation in copper as a function of applied magnetic field for shear waves propagating along [111] and $stackrel{ensuremath{rightarrow}}{mathrm{B}}$ along [$11overline{2}$] so as to give open-orbit resonances. The results are in qualitative agreement with our measurements if we use a deformation potential based on the strained-energy-band calculations of Gray and Gray. Better agreement is obtained by fitting a model-deformation-potential function of proper symmetry to certain features of the experimental data. However, we are unable to reproduce the dip in attenuation at the fundamental resonance which is observed experimentally for sound polarization along $stackrel{ensuremath{rightarrow}}{mathrm{B}}$. The discrepancy may be caused by one of the assumptions made to simplify the calculations, which include using the free-electron approximation for all but those electrons on open orbits, taking the electron mean-free path along $stackrel{ensuremath{rightarrow}}{mathrm{q}}$ to be constant, and assuming that the ionic current is perfectly screened by the electrons." @default.
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- W2080656153 date "1979-04-15" @default.
- W2080656153 modified "2023-09-24" @default.
- W2080656153 title "Role of the deformation potential in ultrasonic attenuation by open-orbit electrons in copper" @default.
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- W2080656153 doi "https://doi.org/10.1103/physrevb.19.3857" @default.
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