References
- J. Cumings and A. Zettl, “Tunable NanoresonatorsConstructed from Telescoping Nanotubes,” phys.Rev. Lett, Vol. 93, No. 8, pp. 086801(4 pages), 2004.
- D, Qian, G. J. Wagner, W. K. Liu, M. F Yu, and R.S. Ruoff, “Mechanical Properties of Carbon Nanotubes: Theoretical Predictions and ExperimentalMeasurements,” Appl. Mech. Rev. Vol. 4, Issue 9, pp.993-1008, 2003.
- Q. Zheng and Q. Jiang, “Multiwalled Carbon Nanotubesas Gigahertz Oscillators,” Phys. Rev. Lett. Vol.88, Issue 4, 045503(3 pages), 2002.
- S. B. Legoas, V. R. Coluci, S. F. Braga, P. Z. Coura,S. O. Dantas, and D. S. Galvao, “Gigahertz NanomechanicalOscillators Based on Carbon Nanotubes,”Nanotechnology 15, S184-S189, 2004. https://doi.org/10.1088/0957-4484/15/4/012
- J. L. Rivera, C. McCabe, and P.T.Cummings, “TheOscillatory Damped Behavior of IncommensurateDouble-walled Carbon Nanotubes,” Nanotechnology,Vol. 16, pp. 186-198, 2005. https://doi.org/10.1088/0957-4484/16/2/003
- Y. E. Lozovik, A. V. Minogin, and A. M. Popov,“Atomic Scale Design of Carbon Nanotubes: TheWay to Produce Bolt and Nut Pairs,” InternationalJournal of Nanotechnology, Vol. 2, No.3, pp. 255-270, 2005. https://doi.org/10.1504/IJNT.2005.008063
- P. Liu. Y. W. Zhang, and C. Lu, “Analysis of theOscillatory Behavior of Double-walled Carbon Nanotube-based Oscillators,” Carbon, Vol. 44, Issue1, pp.27-36, 2006. https://doi.org/10.1016/j.carbon.2005.07.022
- J. Tersoff, “Modeling Solid-state Chemistry : Interatomic Potentials for Multicomponent Systems,” Phys. Rev B38, pp. 5566-5568, 1989.
- D. W. Brenner, “Empirical Potential for Hydrocarbons for use in Simulating the Chemical Vapor Deposition of Diamond Films,” Phys. Rev. B 42, pp. 9458-9471, 1990. https://doi.org/10.1103/PhysRevB.42.9458
- Jeong Won Kang and Jun Ha Lee, “Multi-Waled Carbon Nanotube Oscilator Behavior Analysis Using Classical Molecular Dynamics Simulations,” Journal of the Korean Physical Society, Vol. 53, No.2, pp. 646-651, 2008. https://doi.org/10.3938/jkps.53.646