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首页> 外文期刊>The journal of physics and chemistry of solids >DOUBLE QUANTUM SIZE EFFECTS ON THE ENERGY SPECTRA OF CHARGE CARRIERS IN THIN WIRES OF PURE BISMUTH
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DOUBLE QUANTUM SIZE EFFECTS ON THE ENERGY SPECTRA OF CHARGE CARRIERS IN THIN WIRES OF PURE BISMUTH

机译:量子尺寸对纯铋稀薄膜中电荷载体能量谱的影响

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摘要

The energy spectra of electrons and holes in a thin wire of bismuth are subject to two dimensional size quantizations. Because of the highly anisotropic energy-momentum relationship for bismuth electrons, exact solutions to the Schrodinger equation satisfying appropriate boundary conditions in connection with the quantum size effects are generally difficult to obtain. A perturbation method has been applied to obtain the energy subbands under the double size quantizations. Numerical evaluations have been carried out of the possible quantum-size-induced semimetal to semiconductor transitions. General features of the anisotropic size dependence of the Fermi energy and of the electron density and the identifications of the associated quantum oscillations are presented. [References: 8]
机译:铋细线中电子和空穴的能谱受到二维尺寸量化的影响。由于铋电子具有高度各向异性的能量-动量关系,因此通常难以获得满足与量子尺寸效应有关的适当边界条件的薛定inger方程的精确解。一种扰动方法已经被应用来获得在双倍大小量化下的能量子带。已经对可能的量子尺寸诱导的半金属到半导体的跃迁进行了数值评估。提出了费米能量和电子密度的各向异性尺寸依赖性的一般特征,以及相关的量子振荡的识别。 [参考:8]

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