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GaAs-Based Nanowire Devices with Multiple Asymmetric Gates for Electrical Brownian Ratchets

机译:基于GaAs的纳米线器件,具有用于电布朗棘轮的多个非对称门

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摘要

GaAs-based nanowire devices having multiple asymmetric gates for electrical Brownian ratchets were fabricated and characterized. From three-dimensional potential simulation results and current–voltage characteristics, we confirmed the formation of the asymmetric potential in our device design. Direct current was generated at room temperature by repeatedly switching the potential in a multiple-asymmetric-gate device on and off. Such current was not observed in either a single-asymmetric-gate device or a multiple-symmetric-gate device. The current direction and input frequency dependences of the net current indicated that the observed current was generated by the flashing-ratchet mechanism.
机译:制造并表征了具有多个不对称栅极的基于GaAs的纳米线器件,该栅极用于电布朗棘轮。从三维电势仿真结果和电流-电压特性,我们确认了器件设计中不对称电势的形成。通过反复打开和关闭多不对称栅极器件中的电势,在室温下产生直流电。在单非对称门器件或多对称门器件中均未观察到这种电流。净电流的电流方向和输入频率依赖性表明,观察到的电流是由闪动棘轮机构产生的。

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