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- W2009201699 abstract "The megahertz ultrasonic attenuation in aluminum single crystals ([110] and [111] orientations) of high purity (99.9999%) has been measured at 300 K and 1.2 K for the annealed and the successively deformed (0.14–1.4%) and aged states. The pulse reflection method was used for the attenuation measurement. The dislocation density in the deformed crystal was determined by the room-temperature attenuation on the basis of the Granato-Lucke theory of dislocation damping. The stress-strain data for the deformation were also adopted for the determination. The low-temperature attenuation was used to determine the scattering cross-width d of the dislocation for the conduction electrons on the basis of the Pippard theory of electronic sound attenuation. The obtained result was d =1.8 b , where b was the Burgers vector of the dislocalion. The dislocation specific resistivity (DSR) was also calculated, and the value was DSR=2.0×10 -19 Ω cm 3 . The DSR value was compared with existing experimental and theoretical result..." @default.
- W2009201699 created "2016-06-24" @default.
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- W2009201699 creator A5036578647 @default.
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- W2009201699 date "1987-04-15" @default.
- W2009201699 modified "2023-09-24" @default.
- W2009201699 title "Scattering of Electrons by Dislocations in Aluminum Studied by Ultrasonic Method" @default.
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- W2009201699 doi "https://doi.org/10.1143/jpsj.56.1404" @default.
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