Nine samples of p-type PbTe were studied. Carrier densities, as determined by the high-field Hall coefficient at 4.2 K, ranged from 4.0×{}10¹⁷ to 4.5×{}10¹⁹ cm^-3. The corresponding conductivity mobilities decreased from 704 000 to 12 500 cm²/V sec. Shubnikov-de Haas oscillations were measured for the magnetic field →H in the (11̄0) and (001) planes. The component frequencies were determined by Fourier analysis. The angular dependence of these frequencies was fitted by an ellipsoid of revolution model. For all carrier densities except the highest, this model was found to be adequate. In contrast to most previous work, large enough frequencies were measured to determine the anisotropy accurately. For all carrier densities up to and including 1.1×{}10¹⁹ cm^-3, K=13±1. The cyclotron effective mass mₜ was measured for →H∥[111]. It was found to increase from 0.035m₀ at 2.0×{}10¹⁸ cm^-3 to 0.072m₀ at 4.5×{}10¹⁹ cm^-3. Over this same range, the ratio of spin splitting to Landau level separation was about 0.60 independent of carrier density, and the corresponding g value showed a modest decrease.
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Jensen et al. (1978) studied this question.
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