Образец цитирования:
С. В. Морозов, К. С. Новоселов, А. К. Гейм, “Электронный транспорт в графене”, УФН, 178:7 (2008), 776–780; Phys. Usp., 51:7 (2008), 744–748
Эта публикация цитируется в следующих 111 статьяx:
R. Ya. Rasulov, V. R. Rasulov, I. A. Muminov, M. A. Mamatova, K. K. Urinova, PROCEEDINGS OF THE IV INTERNATIONAL CONFERENCE ON ADVANCES IN SCIENCE, ENGINEERING, AND DIGITAL EDUCATION: ASEDU-IV 2024, 3268, PROCEEDINGS OF THE IV INTERNATIONAL CONFERENCE ON ADVANCES IN SCIENCE, ENGINEERING, AND DIGITAL EDUCATION: ASEDU-IV 2024, 2025, 030005
Mohammed Miniya, Outmane Oubram, Abdel Ghafour El Hachimi, Luis Manuel Gaggero-Sager, “Spatial quasi-bound states of Dirac electrons in graphene monolayer”, Sci Rep, 14:1 (2024)
M Miniya, O Oubram, L M Gaggero-Sager, “Quantum transport in novel self-similar structure based on graphene”, Phys. Scr., 99:1 (2024), 015924
Abdullah Al Roman, Hind Adawi, A.A.E.L. Barbary, Md Mehdi Masud, M Mahbubur Rahman, “A first-principles investigation of structural, thermodynamic, electronic, and optical properties of doped 2D ZrNI monolayer”, Materials Chemistry and Physics, 319 (2024), 129268
O. S. Lebedeva, N. G. Lebedev, A. S. Chibrikov, E. N. Shamina, “Elastic Conductivity of Germanene Ribbons with Acceptor Defects”, Russ. J. Phys. Chem. B, 18:3 (2024), 794
S. V. Eliseeva, D. I. Sementsov, “Optical Spectra of a Photonic Crystal Structure with Graphene Layers”, Opt. Spectrosc., 132:3 (2024), 237
А. П. Джотян, А. А. Аветисян, “Оптические переходы 1S–2Px между уровнями мелкой примеси в монослойном графене”, Proceedings of NAS RA. Physics, 2024, 166
A. P. Djotyan, A. A. Avetisyan, “Optical Transitions 1S–2Px between Lowest States of a Shallow Impurity in Graphene Monolayer”, J. Contemp. Phys., 59:2 (2024), 165
Riyadh Mansoor, Samir M. Hameed, Nidhal Abd Mohammed, “Graphene-based silicon-on-insulator optical waveguide electro-optical modulators: pushing the boundaries of light control”, J Opt, 2024
Ye. Golubev, I. Antonets, “Effect of shungite plate thickness on its electrophysical properties: technological and geophysical aspects”, Vestnik of geosciences, 2024, no. 10, 40
O. S. Lebedeva, N. G. Lebedev, A. S. Chibrikov, E. N. Shamina, “Elastic conductivity of germanene nanoribbons with acceptor defects”, Himičeskaâ fizika, 43:5 (2024), 100
A. P. Djotyan, G. P. Djotyan, A. A. Avetisyan, “Coherent Control of Lowest States of a Shallow Impurity in Graphene Monolayer by Phase Modulated Laser Pulses”, J. Contemp. Phys., 59:3 (2024), 272
Irina V. Fedorova, Svetlana V. Eliseeva, Dmitrij I. Sementsov, “Spectra of a Bragg Microresonator Filled with a Graphene-Containing Medium”, Photonics, 10:4 (2023), 449
Irina V. Fedorova, Svetlana V. Eliseeva, Dmitrij I. Sementsov, “Transmission and Reflection Spectra of a Bragg Microcavity Filled with a Periodic Graphene-Containing Structure”, Applied Sciences, 13:13 (2023), 7559
Svetlana V. Eliseeva, Pavel A. Itrin, Dmitrij I. Sementsov, “The Amplification and Polarization Control of Transmitted Radiation by a Graphene-Containing Photonic Cell”, Photonics, 10:12 (2023), 1318
Igor Antonets, Yevgeny Golubev, Vladimir Shcheglov, “The effect of structure on the conductivity of disordered carbon (the case of graphene-containing shungite)”, Fullerenes, Nanotubes and Carbon Nanostructures, 31:10 (2023), 961
Sadykov N.R., Pilipenko I.A., Jolnirov S.E., “Terahertz Radiation Generation Process in the Medium Based on the Array of the Elongated Nanoparticles”, Opt. Quantum Electron., 54:1 (2022), 36
Miniya M., Oubram O., El Hachimi A.G., Gaggero-Sager L.M., “Fano Factor in Self-Similar Multibarrier Structure Based on Graphene Monolayer”, J. Appl. Phys., 131:2 (2022), 024303
Sergeyev D. Duisenova A., “Electron Transport in Core-Shell Type Fullerene Nanojunction”, Adv. Nano Res., 12:1 (2022), 25–35
Dmitry A. Evseev, Svetlana V. Eliseeva, Anatolij M. Shutyi, Dmitry I. Sementsov, “Surface plasmon-polaritons in a two-layer graphene structure with a dielectric barrier layer under various control regimes”, Журн. СФУ. Сер. Матем. и физ., 15:6 (2022), 730–741