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Quantum Transport in Crystals: Effective Mass Theorem and K·P Hamiltonians

机译:晶体中的量子输运:有效质量定理和K·P哈密顿量

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In this paper the effective mass approximation and the k·p multi-band models, describing quantum evolution of electrons in a crystal lattice, are discussed. Electrons are assumed to move in both a periodic potential and a macroscopic one. The typical period e{epsilon} of the periodic potential is assumed to be very small, while the macroscopic potential acts on a much bigger length scale. Such homogenization asymptotic is investigated by using the envelope-function decomposition of the electron wave function. If the external potential is smooth enough, the k·p and effective mass models, well known in solid-state physics, are proved to be close (in the strong sense) to the exact dynamics. Moreover, the position density of the electrons is proved to converge weakly to its effective mass approximation.
机译:本文讨论了有效质量近似和描述晶体晶格中电子量子演化的k·p多带模型。假定电子以周期性电位和宏观电位运动。假定周期性电势的典型周期ε很小,而宏观电势作用于更大的长度尺度。通过使用电子波函数的包络函数分解来研究这种均匀化渐近线。如果外部势能足够平滑,则在固态物理学中众所周知的k·p模型和有效质量模型将被证明(在很强的意义上)接近于精确的动力学。此外,已证明电子的位置密度弱收敛到其有效质量近似值。

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