Yasuda Masaaki, Takei Kuniharu, Arie Takayuki, Akita Seiji
Department of Physics and Electronics, Osaka Prefecture University, 1-1 Gakuen-cho, Naka-ku, Sakai 599-8531, Japan.
Sci Rep. 2016 Mar 3;6:22600. doi: 10.1038/srep22600.
Despite the superb intrinsic properties of carbon nanotube mechanical resonators, the quality factors at room temperature are 1,000 or less, even in vacuum, which is much lower than that of mechanical resonators fabricated using a top-down approach. This study demonstrates the improvement of the quality factor and the control of nonlinearity of the mechanical resonance of the cantilevered nanotube by electrostatic interaction. The apparent quality factor of the nanotube supported by insulator is improved drastically from approximately 630 to 3200 at room temperature. Results show that retardation of the electrostatic force induced by the contact resistance between the nanotube and the insulator support improves the quality factor. Finite element method calculation reveals that the nonuniform pileup charge on the insulator support strongly influences the nonlinearity of the resonance.
尽管碳纳米管机械谐振器具有卓越的固有特性,但即使在真空中,其室温下的品质因数也在1000或更低,这远低于采用自上而下方法制造的机械谐振器。本研究展示了通过静电相互作用提高悬臂式纳米管机械共振的品质因数并控制其非线性。由绝缘体支撑的纳米管在室温下的表观品质因数从约630大幅提高到3200。结果表明,纳米管与绝缘体支撑之间的接触电阻引起的静电力延迟提高了品质因数。有限元方法计算表明,绝缘体支撑上不均匀的堆积电荷强烈影响共振的非线性。