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Influence of trajectory electron transfer on the anomalous penetration of ultrasound in pure gallium

A.G. ShepelevKhar'kov Physicotechnical Institute, Academy of Sciences of the Ukrainian SSRO. P. LedenevKhar'kov Physicotechnical Institute, Academy of Sciences of the Ukrainian SSRGenady D. FilimonovKhar'kov Physicotechnical Institute, Academy of Sciences of the Ukrainian SSR
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The anomalous penetration of longitudinal ultrasound (70 and 150 MHz) frequency in pure single-crystal gallium is studied experimentally in a weak magnetic field H⊥k at low temperature. A retarded ultrasound signal (relative to the main one) is detected. An investigation of new magnetoacoustic effects permitted the determination of a temperature dependence of the electron collision frequency with thermal phonons νe,ph(T) ∼ T3 for gallium. It is detected that anomalous oscillations in the propagation velocity of ultrasound and signal pulses being propagated by electron transfer in a metal exist even for a field almost parallel to k.

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