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Band-inverted gaps in InAs/GaSb and GaSb/InAs core-shell nanowires

机译:InAs / GaSb和GaSb / InAs核-壳纳米线的能带反转间隙

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摘要

The [111]-oriented InAs/GaSb and GaSb/InAs core-shell nanowires have been studied by the 8 × 8 Luttinger-Kohn Hamiltonian to search for non-vanishing fundamental gaps between inverted electron and hole bands. We focus on the variations of the band-inverted fundamental gap, the hybridization gap, and the effective gap with the core radius and shell thickness of the nanowires. The evolutions of all the energy gaps with the structural parameters are shown to be dominantly governed by the effect of quantum confinement. With a fixed core radius, a band-inverted fundamental gap exists only at intermediate shell thicknesses. The maximum band-inverted gap found is ~4.4 meV for GaSb/InAs and ~3.5 meV for InAs/GaSb core-shell nanowires, and for the GaSb/InAs core-shell nanowires the gap persists over a wider range of geometrical parameters. The intrinsic reason for these differences between the two types of nanowires is that in the shell the electron-like states of InAs is more delocalized than the hole-like state of GaSb, while in the core the hole-like state of GaSb is more delocalized than the electron-like state of InAs, and both favor a stronger electron-hole hybridization.
机译:[11]取向的InAs / GaSb和GaSb / InAs核-壳纳米线已经由8××8 Luttinger-Kohn Hamiltonian进行了研究,以寻找反向电子和空穴带之间不消失的基本间隙。我们专注于带反转的基本间隙,杂交间隙和有效间隙随纳米线的核半径和壳厚度的变化。具有结构参数的所有能隙的演化被证明主要受量子约束的影响。对于固定的芯半径,仅在中间壳厚度处存在带反转的基本间隙。对于GaSb / InAs,发现的最大带反转间隙为〜4.4 meV,对于InAs / GaSb核-壳纳米线为〜3.5μmeV,对于GaSb / InAs核-壳纳米线,该间隙在更宽的几何参数范围内持续存在。两种类型的纳米线之间存在这些差异的内在原因是,在外壳中,InAs的电子状态比GaSb的孔状态更离域,而在内核中,GaSb的孔状态更离域。与InAs的类电子态相比,两者都有利于更强的电子-空穴杂交。

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