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Self-diffusion in 69Ga121Sb/71Ga123Sb isotope heterostructures

机译:69Ga121Sb / 71Ga123Sb同位素异质结构中的自扩散

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摘要

Gallium and antimony self-diffusion experiments have been performed in undoped 69Ga121Sb/71Ga123Sb isotope heterostructures at temperatures between 571 and 708 °C under Sb- and Ga-rich ambients. Ga and Sb profiles measured with secondary ion mass spectrometry reveal that Ga diffuses faster than Sb by several orders of magnitude. This strongly suggests that the two self-atom species diffuse independently on their own sublattices. Experimental results lead us to conclude that Ga and Sb diffusion are mediated by Ga vacancies and Sb interstitials, respectively, and not by the formation of a triple defect proposed earlier by Weiler and Mehrer [Philos. Mag. A 49, 309 (1984)]. The extremely slow diffusion of Sb up to the melting temperature of GaSb is proposed to be a consequence of amphoteric transformations between native point defects which suppress the formation of those native defects which control Sb diffusion. Preliminary experiments exploring the effect of Zn indiffusion at 550 °C on Ga and Sb diffusion reveal an enhanced intermixing of the Ga isotope layers compared to undoped GaSb. However, under the same conditions the diffusion of Sb was not significantly affected.
机译:在富含Sb和Ga的环境下,在571至708°C之间的温度下,未掺杂的69Ga121Sb / 71Ga123Sb同位素异质结构中进行了镓和锑的自扩散实验。用二次离子质谱法测量的Ga和Sb曲线表明,Ga的扩散速度比Sb快几个数量级。这强烈表明这两个自原子物种在其各自的亚晶格上独立扩散。实验结果使我们得出结论,Ga和Sb的扩散分别是由Ga空位和Sb间隙介导的,而不是由Weiler和Mehrer早些时候提出的三重缺陷的形成[Philos。魔术师A 49,309(1984)]。 Sb直至GaSb的熔化温度的极慢扩散是由于本征点缺陷之间的两性转变导致的,这些点抑制了控制Sb扩散的本征缺陷的形成。初步实验探索了550°C的Zn扩散对Ga和Sb扩散的影响,与未掺杂的GaSb相比,Ga同位素层的混合增强了。但是,在相同条件下,Sb的扩散不会受到明显影响。

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