Abstract
The purpose of this thesis is to discuss physical and electrical properties of suspended carbon nanotube resonator. First, the resonant frequency of carbon nanotube will be predicted by plastic mechanics and finite element simulation. Then we will measure the resonant signal based on single electron transportation and mixing effect of single-walled carbon nanotube. We developed a suspended carbon nanotube resonator can be operated in room-temperature and pressure and observed the resonant frequency can be tuned by gate DC bias. Without gate DC bias, the resonant frequency of the device is 78 MHz. With 1.4 V gate DC bias, the resonant frequency of the device is 89.4 MHz.