Mots-clés : nanotubes
@article{VYURM_2010_3_a14,
author = {N. R. Sadykov and N. A. Skorcin},
title = {Quantum-mechanical approach {\cyrt}{\cyro} description of the possibility of the reinforcement of the radiation by means of continuum nanotubes},
journal = {Vestnik \^U\v{z}no-Uralʹskogo gosudarstvennogo universiteta. Seri\^a, Matematika, mehanika, fizika},
pages = {89--94},
year = {2010},
number = {3},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VYURM_2010_3_a14/}
}
TY - JOUR AU - N. R. Sadykov AU - N. A. Skorcin TI - Quantum-mechanical approach то description of the possibility of the reinforcement of the radiation by means of continuum nanotubes JO - Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika PY - 2010 SP - 89 EP - 94 IS - 3 UR - http://geodesic.mathdoc.fr/item/VYURM_2010_3_a14/ LA - ru ID - VYURM_2010_3_a14 ER -
%0 Journal Article %A N. R. Sadykov %A N. A. Skorcin %T Quantum-mechanical approach то description of the possibility of the reinforcement of the radiation by means of continuum nanotubes %J Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika %D 2010 %P 89-94 %N 3 %U http://geodesic.mathdoc.fr/item/VYURM_2010_3_a14/ %G ru %F VYURM_2010_3_a14
N. R. Sadykov; N. A. Skorcin. Quantum-mechanical approach то description of the possibility of the reinforcement of the radiation by means of continuum nanotubes. Vestnik Ûžno-Uralʹskogo gosudarstvennogo universiteta. Seriâ, Matematika, mehanika, fizika, no. 3 (2010), pp. 89-94. http://geodesic.mathdoc.fr/item/VYURM_2010_3_a14/
[1] J. Miller Gordon, G. John, “Shell Structures in Molecular Orbital Energy Diagrams for “Small” Fullerene Cages: Free-Electron Versus Generator Orbital Models”, Journal of Mathematical Chemistry, 33:1 (2003), 55 | DOI | MR | Zbl
[2] Naomi Mizorogi, Masaki Kiuchi, Kumiko Tanaka et al., “$\pi$-Molecular orbitals in fullerenes and the free electron model”, Chemical Physics, 378 (2003), 598
[3] R. Satio, G. Dresselhaus, M. S. Dresselhaus, Physical Properties of Carbon Nanotubes, Imperial College Press, London, 1998, 260 pp.
[4] A. Enyashin, S. Gemming, G. Seifert, “Nanosized allotropes of molybdenum disulfide”, Eur. Phys. J. Special Topics, 149 (2007), 103–125 | DOI
[5] A. N. Enyashin, G. Seifert, “Structure, stability and electronic properties of $\mathrm{TiO_2}$”, Phys. Stat. Sol. (b), 242:7 (2005), 1361–1370 | DOI
[6] O. V. Kibis, M. E. Portnoi, “Uglerodnye nanotrubki kak teragertsovye izluchateli novogo tipa”, Pisma v ZhTF, 31:15 (2005), 85–88 | Zbl
[7] N. R. Sadykov, N. A. Skorkin, “Sposob usileniya SVCh-izlucheniya s pomoschyu raspylennykh v gazoobraznoi srede nanotrubok”, Pisma v ZhTF, 36:17 (2010), 69–78 | MR
[8] R. Pantel, G. Putkhov, Osnovy kvantovoi elektroniki, Mir, M., 1972, 384 pp.
[9] Dzh. Kholl, Dzh. Uatt (red.), Sovremennye chislennye metody resheniya obyknovennykh differentsialnykh uravnenii, Mir, M., 1979, 312 pp.
[10] G. A. Mesyats, M. I. Yalandin, “Pikosekundnaya elektronika bolshikh moschnostei”, UFN, 175:3 (2005), 225 | DOI
[11] G. A. Mesyats, “Zakony podobiya v impulsnykh gazovykh razryadakh”, UFN, 176:10 (2006), 1069–1091 | DOI