O.E. Glukhova – Dr.Sc.(Phys.-Math.), Professor, Head of Department of Radiotechnique and Electrodynamics, Saratov State University named after N.G. Chernyshevsky
E-mail: GlukhovaOE@info.sgu.ru
V.V. Shunaev – Ph.D.(Phys.-Math.), Assistant, Department of Radiotechnique and Electrodynamics, Saratov State University named after N.G. Chernyshevsky
E-mail: vshunaev@list.ru
M.M. Slepchenkov – Ph.D.(Phys.-Math.), Associate Professor, Department of Radiotechnique and Electrodynamics, Saratov State University named after N.G. Chernyshevsky E-mail: slepchenkovm@mail.ru
The dynamics of the endohedral complex K+@C60 (fullerene C60 with encapsulated potassium ion) inside the carbon nanotube under the action of external electromagnetic radiation was studied using the numerical modeling methods. The character of K+@C60 oscillations is determined under the conditions of varying frequency and power of the incident electromagnetic radiation. The presence of resonance in the investigated oscillatory system at the natural frequency and frequencies of the higher harmonics of the external driving force is established. The conditions under which the oscillatory system loses stability and the hybrid carbon structure is destroyed are revealed.
- Mostofizadeh A., Li Y., Song B., Huang Y. Synthesis, Properties, and Applications of Low-Dimensional Carbon-Related Nanomaterials // J. Nanomater. 2011. V. 2011. № 685081. P. 1−21.
- Monthioux M. Carbon Meta-Nanotubes: Synthesis, Properties and Applications // United Kingdom, Wiley. 2011. 426 p.
- Utko P., Ferone R., Krive I.V., Shekhter R.I., Jonson M., Monthioux M., Noe L., Nygard J. Nanoelectromechanical coupling in fullerene peapods probed by resonant electrical transport experiments // Nat. Commun. 2010. V. 1. № 37. P. 1−6.
- Cox B.J., Thamwattana N., Hill J.M. Mechanics of atoms and fullerenes in single-walled carbon nanotubes. II. Oscillatory behaviour // Proc. R. Soc. A. 2007. V. 463. P. 477−494.
- Ansari R., Sadeghi F., Ajori S. Continuum and molecular dynamics study of C60 fullerene–carbon nanotube oscillators // Mech Res Commun. 2013. V. 47. P. 18−23.
- Ansari R., Sadeghi F., Alipour A. Oscillation of C60 Fullerene in Carbon Nanotube Bundles // J. Vib. Acoust. 2013. V. 135. P. 051009-1051009-10.
- Song H.Y., Zha X.W. Molecular dynamics study of effects of radius and defect on oscillatory behaviors of C60-nanotube oscillators // Phys. Lett. A. 2009. V. 373. P. 1058−1061.
- Kim K.S., Park J., Hwang H.J., Kang J.W. A molecular dynamics study on carbon-nanotube oscillators with intertube gaps // Physica E. 2012. V. 44. P. 2027−2031.
- Ansari R., Sadeghi F. Mechanics of nested spherical fullerenes inside multi-walled carbon nanotubes // Eur J Mech A Solids. 2015. V. 49. P. 283−292.
- Glukhova O.E., Kolesnikova A.S., Nefedov I.S., Slepchenkov M.M. Nanoemitter of giga- and terahertz ranges based on a carbon peapod: Numerical simulation // JETP Lett. 2014. V. 99. № 6. P. 349−352.
- Slepchenkov M.M., Kolesnikova A.S., Savostyanov G.V., Nefedov I.S., Anoshkin I.V., Nasibulin A.G., Glukhova O.E. Giga - and terahertz range nanoemitter based on a peapod structure // Nano Research. 2015. V. 8. № 8. P. 2595−2602.
- Stuart S.J., Tutein A.B., Harrison J.A. A reactive potential for hydrocarbons with intermolecular interactions // J Chem. Phys. 2000. V. 112. P. 6472−6486.
- URL = http://nanokvazar.ru/ (data obrashheniya 18.03.2018).
- Glukhova O.E., Kolesnikova A.S., Slepchenkov M.M. Influence of quantum effects on the parameters of a cold cathode with carbon nanotubes // Tech. Phys., 2016. V. 61. P. 149−152.