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- W1970851360 abstract "The electromagnetic, constitutive, and lattice equations governing propagation of transverse acoustic and electromagnetic waves in a metal with conduction electrons possessing a constant scalar effective mass, and in which there is a uniform magnetic field applied along the propagation direction, are given. These equations are used to derive a secular equation describing the dispersion of interacting helicon and acoustic waves, and in which additional structure arising from the difference between the free-electron mass and the effective electron mass is evident. Magnetoacoustic attenuation, the dispersion and damping of uncoupled helicon waves, and the helicon-acoustic interaction are then analyzed in turn. Numerical solutions of the helicon dispersion relation are presented. The dispersion curve displays a branching in the absorption-edge region. A simple analytic treatment of the relaxation-time and effective-mass dependence of the helicon-acoustic interaction is given. The interaction near and in the absorption-edge region is investigated numerically. A rather large effect of this interaction on the magnetoacoustic absorption of potassium in the edge region is found." @default.
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- W1970851360 date "1969-11-15" @default.
- W1970851360 modified "2023-09-23" @default.
- W1970851360 title "Helicon-Acoustic Dispersion Relations in Metals: Effective-Mass and Relaxation-Time Dependence" @default.
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- W1970851360 doi "https://doi.org/10.1103/physrev.187.979" @default.
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