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Resonance vibration of amorphous SiO2 nanowires driven by mechanical or electrical field excitation

机译:机械场或电场激发驱动的非晶SiO2纳米线的共振振动

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In this work, we have used the mechanical resonance method to determine the bending modulus of amorphous SiO2 nanowires and to study an electron charge trapping effect that occurs in these nanowires. For uniform amorphous nanowires having diameter similar to100 nm and length over 10 mum, the fit modulus values cluster near 47 GPa; this value is lower than the commonly accepted value of similar to72 GPa for fused silicon oxide (glass) fibers. For some SiO2 nanowires, we observed up to three closely spaced resonances that are a result of the nanowire anisotropy. We have compared the resonance vibration of nanowires driven by mechanical and also ac electrical field loading. All of the measurements were done inside the chamber of a scanning electron microscope where the nanowires were under bombardment of a flux of similar to3 keV energy electrons. By watching the interaction between the ac electrical field and exposed nanowire when driven at resonance frequency, we have observed significant charge trapping in the nanowires. The combination of charge trapping and decay time was nonuniformly distributed along the nanowire. This suggests a nondestructive method that can be used for studying defects in certain types of nanostructures. (C) 2003 American Institute of Physics. References: 18
机译:在这项工作中,我们使用机械共振法确定了非晶SiO2纳米线的弯曲模量,并研究了这些纳米线中发生的电子电荷捕获效应。对于直径接近100 nm且长度超过10 mum的均匀非晶纳米线,拟合模量值聚集在47 GPa附近;该值低于熔融氧化硅(玻璃)纤维的普遍接受值 72 GPa。对于一些SiO2纳米线,我们观察到多达三个紧密间隔的共振,这是纳米线各向异性的结果。我们比较了由机械和交流电场负载驱动的纳米线的共振振动。所有测量都是在扫描电子显微镜的腔室内完成的,其中纳米线受到类似于3 keV能量电子的通量的轰击。通过观察以谐振频率驱动时交流电场和暴露的纳米线之间的相互作用,我们观察到纳米线中存在显着的电荷捕获。电荷捕获和衰减时间的组合沿纳米线分布不均匀。这表明了一种可用于研究某些类型纳米结构缺陷的非破坏性方法。(C) 2003年美国物理研究所。[参考文献:18]

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