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Influence of plate acoustic waves on electronic transport in nanowires

机译:板声波对纳米线电子传输的影响

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摘要

The acoustoelectric effect is the generation of a acoustoelectric current in a non-biased device by a piezoactive acoustic wave. This effect has recently attracted the attention of researchers as a possible method to control the motion of massive objects in the quantum regime. We suggest using this effect for development of highly sensitive nanoelectronic sensors. The sensitivity could be increased through the use of modulation mode of operation based on the acoustic pilot signal and the transition from quasi-stationary measurement to measurement at the modulation frequency. The acoustic delay line based on shear-horizontal acoustic wave of zero order (SH0) with resonant frequency 3.25 MHz in Y-X LiNbO3 plate was produced. The nanostructure consisting of nanowire with size 20 nm x 180 nm was placed in the center between IDTs. The current-voltage characteristics of this nanowire in the presence and absence of the acoustic wave were meazured by a picoampermeter. The analysis has shown that the presence of piezoactive acoustic wave is influenced by electric current in a nanowire.
机译:声电效应是通过压电声波产生非偏置装置中的声电流。这种效果最近引起了研究人员的注意,作为控制量子制度中的大量物体运动的可能方法。我们建议使用这种对高敏感纳米电子传感器的发展的效果。通过使用基于声导信号的调制操作模式和从准静止测量到调制频率测量的转换来增加灵敏度。产生基于零级(SH0)的剪切水平声波的声学延迟线,其具有谐振频率3.25MHz在Y-X LiNBO3板中。由具有尺寸20nm×180nm的纳米线组成的纳米结构被置于IDT之间的中心。通过微微荧光仪释放出在声波的存在和不存在中,该纳米线的电流 - 电压特性被微微荧光剂释放。分析表明,压电声波的存在受纳米线中的电流的影响。

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