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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
M. V. Davidovich, “Metal film on a substrate in a magnetic field as a microwave–terahertz magnetoplasmon slowing system”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:3 (2024), 187–200 ; JETP Letters, 119:3 (2024), 186–199 |
2. |
M. V. Davidovich, “Influence of spatial dispersion on plasmons along graphene sheets”, Zhurnal Tekhnicheskoi Fiziki, 94:3 (2024), 385–399 |
3. |
M. V. Davidovich, “Thermal-field emission in nanostructures with resonant tunneling”, Zhurnal Tekhnicheskoi Fiziki, 94:1 (2024), 32–47 |
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2023 |
4. |
M. V. Davidovich, O. E. Glukhova, “Correlation relations for graphene and its thermal radiation”, Izv. Sarat. Univ. Physics, 23:2 (2023), 167–178 |
5. |
M. V. Davidovich, “Resonant tunneling of photons in layered optical nanostructures (metamaterials)”, Zhurnal Tekhnicheskoi Fiziki, 93:4 (2023), 495–504 |
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2021 |
6. |
M. V. Davidovich, “Dyakonov plasmon-polaritones along a hyperbolic metamaterial surface”, Computer Optics, 45:1 (2021), 48–57 |
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7. |
M. V. Davidovich, “Nonlinear tunneling of electromagnetic wave through a plasma layer”, Izv. Sarat. Univ. Physics, 21:2 (2021), 116–132 |
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2020 |
8. |
M. V. Davidovich, “Nonlinear problem of temperature distribution inside the Earth”, Izvestiya VUZ. Applied Nonlinear Dynamics, 28:2 (2020), 140–157 |
9. |
M. V. Davidovich, “Backward Zenneck wave along flat the media boundary”, Optics and Spectroscopy, 128:9 (2020), 1269–1276 ; Optics and Spectroscopy, 128:9 (2020), 1379–1387 |
10. |
M. V. Davidovich, “Dyakonov plasmon polaritons, extending along the surfaces of a hyperbolic metamaterial”, Optics and Spectroscopy, 128:4 (2020), 556–563 ; Optics and Spectroscopy, 128:4 (2020), 544–552 |
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11. |
M. V. Davidovich, “The energy transfer velocity by a plane monochromatic
electromagnetic wave through a layer of matter”, Vestn. Samar. Gos. Tekhn. Univ., Ser. Fiz.-Mat. Nauki [J. Samara State Tech. Univ., Ser. Phys. Math. Sci.], 24:1 (2020), 22–40 |
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2019 |
12. |
M. V. Davidovich, I. A. Kornev, “Optical, IR and THz screens based on layered metal-dielectric-semiconductor structures”, Computer Optics, 43:5 (2019), 765–772 |
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13. |
M. V. Davidovich, “Plasmon-polaritons along the asymmetric hyperbolic metamaterial”, Izv. Sarat. Univ. Physics, 19:4 (2019), 288–303 |
14. |
M. V. Davidovich, “Negative dispersion, refraction and backward polaritons: impedance approach”, Izv. Sarat. Univ. Physics, 19:2 (2019), 95–112 |
15. |
M. V. Davidovich, I. A. Kornev, A. B. Timofeev, “Nonlinear temperature waves: Analysis based on the nonlinear heat equation”, Izvestiya VUZ. Applied Nonlinear Dynamics, 27:6 (2019), 73–90 |
16. |
M. V. Davidovich, “Time-dependent resonant tunneling in a double-barrier diode structure”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:7 (2019), 465–473 ; JETP Letters, 110:7 (2019), 472–480 |
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17. |
M. V. Davidovich, R. K. Yafarov, “Pulsed and static field emission vac of carbon nanocluster structures: experiment and its interpretation”, Zhurnal Tekhnicheskoi Fiziki, 89:8 (2019), 1282–1293 ; Tech. Phys., 64:8 (2019), 1210–1220 |
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18. |
M. V. Davidovich, “Slow-wave system of double shifted impedance comb”, Zhurnal Tekhnicheskoi Fiziki, 89:2 (2019), 280–296 ; Tech. Phys., 64:2 (2019), 248–264 |
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19. |
M. V. Davidovich, “Dispersion of surface plasmons in structures with a conducting film”, Optics and Spectroscopy, 126:3 (2019), 360–369 ; Optics and Spectroscopy, 126:3 (2019), 279–289 |
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20. |
M. V. Davidovich, “Localised plasmons in sphere-like fullerenes and nanoparticles with conducting shells: Classical electrodynamic approach”, Kvantovaya Elektronika, 49:9 (2019), 868–877 [Quantum Electron., 49:9 (2019), 868–877 ] |
21. |
M. V. Davidovich, “Hyperbolic metamaterials: production, properties, applications, and prospects”, UFN, 189:12 (2019), 1249–1284 ; Phys. Usp., 62:12 (2019), 1173–1207 |
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2018 |
22. |
M. V. Davidovich, “Diamagnetism and paramagnetism of a metamaterial consisting of rings with a current”, Pis'ma v Zh. Èksper. Teoret. Fiz., 108:5 (2018), 299–306 ; JETP Letters, 108:5 (2018), 279–286 |
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23. |
M. V. Davidovich, R. K. Yafarov, “Field-emission staggered structure based on diamond–graphite clusters”, Zhurnal Tekhnicheskoi Fiziki, 88:2 (2018), 283–293 ; Tech. Phys., 63:2 (2018), 274–284 |
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2017 |
24. |
M. V. Davidovich, O. E. Glukhova, M. M. Slepchenkov, “The graphene based terahertz transistor”, Izv. Sarat. Univ. Physics, 17:1 (2017), 44–54 |
25. |
M. V. Davidovich, “Landauer–Datta–Lundstrom model for terahertz transistor amplifier based on graphene”, Zhurnal Tekhnicheskoi Fiziki, 87:8 (2017), 1206–1215 ; Tech. Phys., 62:8 (2017), 1218–1227 |
26. |
M. V. Davidovich, “Maximum deceleration and negative dispersion of plasmons along a metal layer”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 43:22 (2017), 55–62 ; Tech. Phys. Lett., 43:11 (2017), 1023–1026 |
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27. |
M. V. Davidovich, “Plasmons in multilayered plane-stratified structures”, Kvantovaya Elektronika, 47:6 (2017), 567–579 [Quantum Electron., 47:6 (2017), 567–579 ] |
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2016 |
28. |
M. V. Davidovich, A. I. Timofeev, I. A. Kornev, V. Ya. Yavchunovsky, “About the definition of a nonlinear inductance in static and dynamic regimes”, Izv. Sarat. Univ. Physics, 16:1 (2016), 33–43 |
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2015 |
29. |
M. V. Davidovich, S. G. Souchkov, N. A. Bushuev, “Modeling of radio-frequency identification tags antennas”, Izvestiya VUZ. Applied Nonlinear Dynamics, 23:1 (2015), 76–91 |
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2013 |
30. |
M. V. Davidovich, P. A. Shilovsky, D. K. Andreichenko, “Using parallel computing technologies for modeling of metallic photonic crystals”, Izv. Saratov Univ. Math. Mech. Inform., 13:2(1) (2013), 86–90 |
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2012 |
31. |
N. A. Bushuev, M. V. Davidovich, P. A. Shilovskii, “The perspective slow-wave systems of terahertz band for TWT”, Izv. Sarat. Univ. Physics, 12:2 (2012), 64–75 |
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32. |
M. V. Davidovich, “The conservation laws and the densities of electromagnetic field energy and momentum in dispersive media”, Izv. Sarat. Univ. Physics, 12:1 (2012), 46–54 |
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2011 |
33. |
M. V. Davidovich, “Why the refractive index couldn't be negative”, Izv. Sarat. Univ. Physics, 11:1 (2011), 42–47 |
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2010 |
34. |
M. V. Davidovich, “On energy and momentum conservation laws for an electromagnetic field in a medium or at diffraction on a conducting plate”, UFN, 180:6 (2010), 623–638 ; Phys. Usp., 53:6 (2010), 595–609 |
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2009 |
35. |
M. V. Davidovich, “On conservation lows for energy and momentum in electromagnetic field in media and under plane wave diffraction on conducting plate”, Izv. Sarat. Univ. Physics, 9:2 (2009), 65–89 |
36. |
M. V. Davidovich, J. V. Stephuk, “Integral equations for photonic crystal fibers”, Izv. Sarat. Univ. Physics, 9:1 (2009), 2–17 |
37. |
M. V. Davidovich, “0n the Hartman paradox, electromagnetic wave tunneling and superluminal velocities (comment on “Tunneling of electromagnetic waves: paradoxes and prospects” by A. B. Shvartsburg)”, UFN, 179:4 (2009), 443–446 ; Phys. Usp., 52:4 (2009), 415–418 |
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2008 |
38. |
M. V. Davidovich, “Disclosure of objects in multilayared media by waveguide probe”, Izv. Sarat. Univ. Physics, 8:2 (2008), 3–11 |
39. |
M. V. Davidovich, “Dielectric resonators: the integral and integrodifferential equations methods”, Izv. Sarat. Univ. Physics, 8:1 (2008), 3–14 |
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2007 |
40. |
M. V. Davidovich, S. V. Aleksutova, I. V. Shilin, V. S. Borisov, “Diffraction of flat electromagnrtic wave on non-linear dielectric slab”, Izv. Sarat. Univ. Physics, 7:1 (2007), 32–40 |
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2005 |
41. |
M. V. Davidovich, “Nonstationary excitation of open structures”, Izv. Sarat. Univ. Physics, 5:1 (2005), 68–83 |
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2019 |
42. |
M. V. Davidovich, “Comment on “Plasmons in waveguide structures formed by two graphene layers””, Pis'ma v Zh. Èksper. Teoret. Fiz., 109:11 (2019), 803–804 ; JETP Letters, 109:11 (2019), 768–769 |
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2014 |
43. |
M. V. Davidovich, “On the analytical signal and Yu. N. Zajko article «A history of One "Artefact"»”, Izv. Sarat. Univ. Physics, 14:2 (2014), 79–84 |
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2013 |
44. |
D. I. Trubetskov, V. M. Anikin, L. M. Babkov, D. A. Usanov, A. A. Ignatyev, M. V. Davidovich, “The memory of Prozorkevich Alexandr Vasil'evich”, Izv. Sarat. Univ. Physics, 13:2 (2013), 88–89 |
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