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Suppression of Current Fluctuations in Carbon Nanotube Field-Effect Transistors by Applying Alternating Current

机译:通过施加交流电流抑制碳纳米管场效应晶体管的电流波动

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摘要

A method of suppressing current fluctuations in carbon nanotube field-effect transistors (CNTFETs) is proposed. We compared the time dependences of the drain current for direct current (DC) measurement and alternating current (AC) measurement with a lock-in amplifier. Drain-current fluctuations were highly suppressed by the AC with lock-in method in the small gate voltage regime. On the other hand, the current fluctuations for DC measurements were not so suppressed even if the integration time was increased from 80 μs to 10 ms. The frequency dependence of the current noise power spectra of the DC measurements was approximately 1/f while that of the AC measurement was approximately 1/f{sup}2. These results indicate that the use of AC with a lock-in amplifier is very suitable for the suppression of current fluctuations.
机译:提出了一种抑制碳纳米管场效应晶体管(CNTFET)中电流波动的方法。我们将漏极电流的时间依赖性与锁放大器进行直流(直流)测量和交流(AC)测量的时间依赖性。在小栅极电压状态下,AC通过锁定方法高度抑制漏极电流波动。另一方面,即使集成时间从80μs增加到10 ms,也不会如此抑制的DC测量的电流波动。 DC测量的当前噪声功率谱的频率依赖性约为1 / f,而AC测量的电流约为1 / f {SUP} 2。这些结果表明,使用具有锁定放大器的AC非常适合于抑制电流波动。

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