DocumentCode
1366625
Title
Resonance Properties of 3C-SiC Nanoelectromechanical Resonator in Room-Temperature Magnetomotive Transduction
Author
Jun, Seong Chan ; Cho, Joon Hyong ; Kim, Whan Kyun ; Jung, Young Mo ; Hwang, Sukju ; Shin, Sangchul ; Kang, Ji Yoong ; Shin, Jeashik ; Song, Insang ; Choi, Jae-Young ; Lee, Sangyoon ; Kim, Jong Min
Author_Institution
Sch. of Mech. Eng., Yonsei Univ., Seoul, South Korea
Volume
30
Issue
10
fYear
2009
Firstpage
1042
Lastpage
1044
Abstract
We demonstrate the effect of nanoresonator geometry on the resonance property using a magnetomotive transduction technique for SiC nanoresonators in moderate conditions of pressure, temperature, and magnetic intensity. These trials were performed in conditions similar to those useful for practical applications to assist in the deployment of SiC-based nanoelectromechanical system prototype devices. This letter confirms that the resonant properties of a nanoscaled electromechanical resonator in moderate conditions are similar to those found during tests in ideal conditions. The resonance characteristics were analyzed based on the geometrical changes of the nanoresonator. The radio-frequency performance parameters such as the critical amplitude and dynamic range, which are crucial in the determination of linear operation range of nanoresonators, were maintained at a level comparable to those found under laboratory conditions. This letter brings this technology closer to practical applications in sensors, filters, and the oscillation of nanoscaled electromechanical devices.
Keywords
micromechanical resonators; nanoelectromechanical devices; silicon compounds; wide band gap semiconductors; SiC; magnetic intensity; nanoelectromechanical resonator; nanoresonator; resonance property; room-temperature magnetomotive transduction; Magnetomotive transduction; nanomechanical resonator; quality factor;
fLanguage
English
Journal_Title
Electron Device Letters, IEEE
Publisher
ieee
ISSN
0741-3106
Type
jour
DOI
10.1109/LED.2009.2029873
Filename
5235126
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