Measurements of magnetization, magnetic susceptibility, specific heat, and Hall effect of the Pb_1-x-y{Sn}ₓMnyTe semimagnetic semiconductor (x=0.72, y=0.03 and x=0.64, y=0.03) were performed in samples with different concentration of carriers (p=8×{}10¹⁹ to 1.4×{}10²¹ cm^-3). A low-temperature ferromagnetic phase was established in the samples with carrier concentration larger than a threshold value pₜ=3×{}10²⁰ cm^-3. Samples with lower carrier concentrations are paramagnetic in the whole temperature range studied (T=1.5--300 K). The carrier-concentration dependence of the Curie temperature has an unusual thresholdlike character. The explanation of this effect is based on the Ruderman-Kittel-Kasuya-Yosida (RKKY) indirect exchange interaction between Mn spins and a two-valence-band model of the band structure of Pb_1-x-y{Sn}ₓMnyTe. Theoretical calculations based on the experimentally determined parameters of the band structure are presented. The results show that the most important role in the RKKY interaction is played by heavy holes from the {Σ} band located 185 meV below the top of the L band of light holes.
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Story et al. (1990) studied this question.
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