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Structural and Optical Properties of Si/Ge Nanowire Heterojunctions

机译:Si / Ge纳米线异质结的结构和光学性质

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摘要

In crystalline, dislocation-free, Si/Ge nanowire (NW) axial heterojunctions grown using the vapor-liquid-solid (VLS) technique, transmission electron microscopy (TEM) photoluminescence (PL) and Raman spectroscopy reveal a SiGe alloy transition layer with preferential chemical composition and strain. In addition to the lattice mismatch, strain due to the difference in Si and Ge thermal expansion is observed. We find, in agreement with theoretical predictions, that the strain can be partially relived by lateral nanowire expansion in the vicinity of the Si/Ge heterojunction. In addition to the observed nanowire lateral expansion, the lattice mismatched induced strain could be relaxed by other mechanisms including intermixing, formation of structural defects and partial amorphization. The conclusions are supported by analytical TEM measurements.
机译:在使用气液固(VLS)技术生长的晶体,无位错的Si / Ge纳米线(NW)轴向异质结中,透射电子显微镜(TEM)的光致发光(PL)和拉曼光谱显示出SiGe合金过渡层具有优先作用化学成分和应变。除了晶格失配,还观察到由于Si和Ge热膨胀差异而引起的应变。我们发现,与理论预测相一致,该应变可以通过Si / Ge异质结附近的横向纳米线膨胀而部分恢复。除了观察到的纳米线横向扩展,晶格失配引起的应变还可以通过其他机制来缓解,包括混合,结构缺陷的形成和部分非晶化。分析TEM测量支持了这些结论。

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  • 会议地点 Toronto(CA)
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    ECE Department, New Jersey Institute of Technology, Newark, New Jersey;

    ECE Department, New Jersey Institute of Technology, Newark, New Jersey;

    ECE Department, New Jersey Institute of Technology, Newark, New Jersey;

    Department of Electrical Engineering, Stanford University, Stanford, CA 94305;

    Institute for Microstructural Sciences, National Research Council, Ottawa, Ontario K1A 0R6, Canada;

    Institute for Microstructural Sciences, National Research Council, Ottawa, Ontario K1A 0R6, Canada;

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