@inproceedings{db2e27ee7c444c3abee854a4b607ff79,
title = "A carbon nanotube vibration gyroscope based on field emission",
abstract = "A gyroscope based on Coriolis effect and fabricated by Carbon Nanotube (CNT) was presented. The gyroscope was designed A CNT is vibration at x direction, when there a rotation around z direction, acceleration happens to the y direction. The natural frequency of MWCNT is depending on the inner diameter, outer diameter and length. The CNT was driven by the electrostatic force to its nature frequency. A CNT with a length of 1 μm was used for emitter and an anode with a bias angle is etched by Focused Ion Beam (FIB) which is set to the opposite to the CNT. An electrode is set near the CNT tip, which is employed to pulling the CNT for mechanical resonances by an AC voltage. The CNT with a resonate frequency of 1 MHz and mechanical quality factor Q of ∼400 was tested at rotation speed of 20 rad.s.",
keywords = "CNT, Field Emission, Gyroscope, Nanorobotic Manipulation, Resonate Carbon Nanotube",
author = "Zhan Yang and Masahiro Nakajima and Yajing Shen and Tao Yue and Sun Lining and Qiang Huang and Toshio Fukuda",
year = "2013",
doi = "10.1109/NANO.2013.6720938",
language = "英语",
isbn = "9781479906758",
series = "Proceedings of the IEEE Conference on Nanotechnology",
pages = "51--56",
booktitle = "2013 13th IEEE International Conference on Nanotechnology, IEEE-NANO 2013",
note = "2013 13th IEEE International Conference on Nanotechnology, IEEE-NANO 2013 ; Conference date: 05-08-2013 Through 08-08-2013",
}