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Average Current Through a Single-electron Transistor Under Fluctuations of an Observer's Frame of Reference

机译:观察者参考系波动下通过单电子晶体管的平均电流

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The average current through a single-electron transistor (SET) under fluctuations of an observer's frame of reference (OFR) is reported. To date, the average current through a SET has been studied under the assumption that an OFR remains constant throughout the performance of measurements of the current; thus, it remains an unsolved problem as to what is measured of the current when the OFR is assumed to fluctuate. In this paper, a SET comprising a source, drain, and single channel is considered, where an OFR is assumed to be matched to the electrochemical potential energy of the drain of the SET. The average current through the SET for two types of OFR fluctuation is formulated: periodic-square-wave fluctuation and periodic-sawtooth-wave fluctuation, in time representations. Under these types of fluctuation, the average current exhibits a zero-bias Coulomb peak--the amplitude of which gradually increases with the amplitude of the fluctuation type divided by temperature. The amplitude of the zero-bias Coulomb peak is greater in the case of periodic-square-wave fluctuations. Therefore, the amplitude of the zero-bias Coulomb peak together with a varying of both the energy of the channel and the temperature has the potential to reveal the distribution of fluctuations of an OFR.
机译:报告了在观察者参考系(OFR)波动下通过单电子晶体管(SET)的平均电流。迄今为止,在假设OFR在整个电流测量过程中保持恒定的前提下,已经研究了通过SET的平均电流。因此,在假设OFR波动时,关于电流测量值仍然是一个未解决的问题。在本文中,考虑了包括源极,漏极和单通道的SET,其中OFR假定与SET漏极的电化学势能匹配。用时间表示形式表示了通过SET的两种OFR波动平均电流:周期性方波波动和周期性锯齿波波动。在这些类型的波动下,平均电流会表现出零偏库仑峰-振幅随波动类型的振幅除以温度而逐渐增加。在周期性方波波动的情况下,零偏库仑峰的振幅更大。因此,零偏库仑峰的振幅以及通道能量和温度的变化都有可能揭示OFR波动的分布。

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