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Surface effects and nonlinear optical properties of ZnO nanowires

机译:ZnO纳米线的表面效应和非线性光学性质

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This paper discusses the surface effects and nonlinear optical properties of ZnO nanowires. First, the influence of the large surface-to-volume ratio of the nanowires on their photoluminescence properties is shown. The occurrence of a surface-exciton emission line is demonstrated and its properties are studied in time-integrated and time-resolved photoluminescence measurements. It is further demonstrated that this band is sensitive to surface modifications of the nanowires, such as dielectric and metallic coatings. It is shown that hydrogen can passivate deep defects in ZnO nanowires thereby reducing the defect luminescence and strongly enhancing the near-bandedge excitonic luminescence. The photoluminescence properties of chemically synthesized ZnO nanowires are compared to those of nanowires grown by vapor-transport techniques. The non-linear coefficients of chemically synthesized nanowires are analyzed, and first preliminary measurements of the optical gain of a ZnO nanowire waveguide are analyzed.
机译:本文讨论了ZnO纳米线的表面效应和非线性光学性质。首先,示出了纳米线的大的表面体积比对纳米线的光致发光性质的影响。证明了表面激子发射线的出现,并在时间积分和时间分辨光致发光测量中研究了其性质。进一步证明该带对纳米线的表面修饰敏感,例如介电和金属涂层。结果表明,氢可以钝化ZnO纳米线中的深层缺陷,从而减少缺陷发光并强烈增强近带激发光。将化学合成的ZnO纳米线的光致发光特性与通过蒸汽传输技术生长的纳米线的光致发光特性进行了比较。分析化学合成的纳米线的非线性系数,并分析ZnO纳米线波导的光学增益的初步测量。

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