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- W2049201356 abstract "The sound attenuation coefficient ensuremath{alpha} is calculated in perturbation theory around the Boltzmann result, ${ensuremath{alpha}}^{0}$, for two- and three-dimensional (3D) disordered electronic systems. For 3D systems we calculate impurity density corrections to ${ensuremath{alpha}}^{0}$ up to second order. The second-order correction is found to be nonanalytic in the impurity density. We also calculate the leading nonanalytic low-frequency corrections to ${ensuremath{alpha}}^{0}$ due to electron localization effects up to terms of second order in the impurity density. The theory suggests that for 2D systems there will be singular low-frequency corrections to ${ensuremath{alpha}}^{0}$ even in the presence of a magnetic field. The perturbation theory also shows that the behavior of ensuremath{alpha} near an electronic mobility edge cannot be obtained by exponentiating an ensuremath{epsilon} expansion around d=2." @default.
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- W2049201356 date "1986-08-15" @default.
- W2049201356 modified "2023-09-26" @default.
- W2049201356 title "Nonanalytic behavior of ultrasonic attenuation in disordered electronic systems" @default.
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- W2049201356 doi "https://doi.org/10.1103/physrevb.34.2168" @default.
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