Published in

American Physical Society, Physical Review Letters, 8(97)

DOI: 10.1103/physrevlett.97.087203

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Ultrahigh Frequency Nanotube Resonators

Journal article published in 2006 by H. B. Peng, C. W. Chang, S. Aloni, T. D. Yuzvinsky ORCID, A. Zettl ORCID
This paper was not found in any repository, but could be made available legally by the author.
This paper was not found in any repository, but could be made available legally by the author.

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Abstract

We report carbon-nanotube-based electromechanical resonators with the fundamental mode frequency over 1.3 GHz, operated in air at room temperature. A new combination of drive and detection methods allows for unprecedented measurement of both oscillation amplitude and phase and elucidates the relative mobility of static charges near the nanotube. The resonator serves as an exceptionally sensitive mass detector capable of approximately 10(-18) g resolution.