GaSb量子点的磁性包括自旋轨道相互作用

O. Bauzha, S. Zagorodnyuk, B. Sus', Yuri Len
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引用次数: 0

摘要

给出了自旋轨道相互作用对低维量子点磁化率和磁化率影响的定量数值计算。得到的特征表明,在超低温区域,合金具有不规则的行为。结果表明,由于自旋轨道相互作用,小磁场下的磁化约束与电子能级的交点有关。对GaSb量子点的计算表明,其抗磁性向顺磁性转变,磁化率和磁化率随温度的升高而趋于平滑。
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Magnetic Properties of GaSb Quantum Dots Include Spin-Orbit Interaction
Quantitative numerical calculations of the effect of spin-orbit interaction on the magnetization and magnetic susceptibility of electrons to low-dimensional quantum dots were presented. The obtained characteristics demonstrate the irregular behavior in the region of ultralow temperatures. It is shown that the magnetization restraints at small magnetic fields are associated with the intersection of the energy levels of electrons, as a result of spin-orbit interaction. The calculations performed for GaSb quantum dots demonstrate the transformation of diamagnetic properties into paramagnetic ones, as well as the smoothing of the characteristics of magnetization and magnetic susceptibility with increasing temperature.
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