Magnetic susceptibility of (Bi2 − xSbx)Te3 (0 < x < 1) alloys in the temperature range 2 to 50 K

被引:0
作者
N. P. Stepanov
V. U. Nalivkin
G. A. Potapov
机构
[1] Chernishevsky Zabaikalsky State Humanitarian Pedagogical University,
[2] Chita State University,undefined
来源
Semiconductors | 2012年 / 46卷
关键词
Magnetic Susceptibility; Effective Mass; Free Carrier; Josephson Junction; Hall Coefficient;
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学科分类号
摘要
The superconducting quantum interferometer device with Josephson junctions (SQUID magnetometer) is used to study the temperature dependences of the magnetic susceptibility of (Bi2−xSbx)Te3 (0 < x < 1) alloy crystals in the temperature range 2 to 50 K, at the magnetic field vector H orientations H | C3 and H ⊥ C3 with respect to the crystal trigonal axis C3. It is found that the magnetic susceptibility of the ion core of the samples under study is χG = −0.35 × 10−6 cm3/g, the contribution of lattice defects to magnetic susceptibility can be disregarded, and the contribution of free carriers is of a diamagnetic nature in the entire studied temperature range. It is shown that the contribution of free carriers to the resulting magnetic susceptibility and its anisotropy can be described within the Pauli and Landau-Peierls approach. In calculating the magnetic susceptibility, taking into account the constant concentration of free carriers in the state of pronounced degeneracy, it is found that the temperature dependence of the anisotropic effective masses varies with crystal chemical composition. This is possibly associated with the complex structure of the valence band and its variation as the Sb2Te3 content in the alloy increases.
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页码:22 / 28
页数:6
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