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Analysis of Critical Dimensions for Nanowire Core-Multishell Heterostructures

机译:纳米线核-多壳异质结构的临界尺寸分析

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摘要

Critical dimensions for nanowire core-multishell heterostructures are analyzed by using finite-element method based on the energy equilibrium criteria. Results show that the nanowire core-shell heterostructure can sufficiently reduce the strain in the shell and increase the critical shell thickness. The critical dimensions for the nanowire core-multishell heterostructure are determined by the stress fields generated at two heterointerfaces. For thin barrier, the critical dimensions decrease as the core radius increases, while when the barrier is thick enough, the critical dimensions show an increase with the increase of core radius conversely. This can be attributed to a competition between the lattice mismatch and strain distribution, which dominate the critical dimensions alternatively. Two critical quantum well thicknesses are obtained in the nanowire core-multishell heterostructure. Below the dislocation-free critical thickness, the structure will be coherent regardless of the barrier thickness. While above the dislocation-unavoidable thickness, dislocations are always energetically favored. In the dislocation-controllable region between the two critical thicknesses, coherent structure can be obtained via controlling the well and barrier thicknesses. The results are in good agreement with the experimental data and may serve as guidance for the design of coherent nanowire core-multishell quantum well structures and devices.
机译:基于能量平衡标准,使用有限元方法分析了纳米线核-多壳异质结构的临界尺寸。结果表明,纳米线核-壳异质结构可以充分减小壳中的应变并增加临界壳厚度。纳米线核-多壳异质结构的临界尺寸取决于在两个异质界面处产生的应力场。对于薄壁垒,临界尺寸随芯半径的增加而减小,而当壁垒足够厚时,临界尺寸随芯半径的增加而增大。这可以归因于晶格失配和应变分布之间的竞争,而竞争又决定了临界尺寸。在纳米线核-多壳异质结构中获得了两个临界量子阱厚度。在无位错临界厚度以下,无论势垒厚度如何,结构都将保持一致。在位错不可避免的厚度以上时,总是大力支持位错。在两个临界厚度之间的位错可控区域中,可以通过控制阱和势垒厚度来获得相干结构。结果与实验数据吻合良好,可作为设计相干纳米线核-多壳量子阱结构和器件的指导。

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