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Single Carbon Nanotube Schottky Diode Microwave Rectifiers

机译:单碳纳米管肖特基二极管微波整流器

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摘要

We report the fabrication of single and few-channel carbon nanotube (CNT) Schottky diodes on high-frequency compatible substrates using horizontally aligned CNT arrays and dissimilar metal contacts in a coplanar-waveguide geometry. Rectification of ac signals in the range of 100 MHz–40 GHz is examined and the observed cutoff frequencies are used to compute the Schottky junction capacitance of the devices, which is strongly CNT-length-dependent and appears dominated by stray capacitance between the CNT channel and metal electrode, in agreement with electrostatic simulations.
机译:我们报告在高频兼容基板上使用水平排列的CNT阵列和共面波导几何中的异种金属触点制造单通道和少通道碳纳米管(CNT)肖特基二极管。检查了100 MHz–40 GHz范围内的交流信号的整流,并使用观察到的截止频率来计算器件的肖特基结电容,该电容与CNT长度密切相关,并且似乎受CNT通道之间的杂散电容支配和金属电极,与静电模拟一致。

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