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Publications in Math-Net.Ru |
Citations |
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2021 |
1. |
A. V. Pavlenko, D. A. Kiselev, Ya. Yu. Matyash, “Dielectric and ferroelectric properties of thin heteroepitaxial films of SBN-50”, Fizika Tverdogo Tela, 63:6 (2021), 776–782 ; Phys. Solid State, 63:6 (2021), 881–887 |
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A. V. Nazarenko, A. V. Pavlenko, K. G. Abdulvakhidov, “Structure, the grain structure, and the dielectric properties of ceramics of solid solutions YCu$_{x}$Mn$_{1-x}$O$_{3}$”, Fizika Tverdogo Tela, 63:3 (2021), 400–405 ; Phys. Solid State, 63:3 (2021), 492–497 |
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3. |
A. V. Pavlenko, D. V. Stryukov, L. I. Ivleva, A. P. Kovtun, K. M. Zhidel, P. A. Lykov, “Structural characteristics of Sr$_{0.61}$Ba$_{0.39}$Nb$_{2}$O$_{6}$/MgO(001) thin films grown by RF-cathode sputtering”, Fizika Tverdogo Tela, 63:2 (2021), 250–254 ; Phys. Solid State, 63:2 (2021), 286–290 |
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2020 |
4. |
A. S. Anokhin, A. G. Razumnaya, A. V. Pavlenko, “Lattice dynamics of the strontium ferrotungstate in the temperature range 300–700 K”, Fizika Tverdogo Tela, 62:12 (2020), 2169–2173 ; Phys. Solid State, 62:12 (2020), 2434–2438 |
5. |
A. V. Pavlenko, K. M. Zhidel, L. A. Shilkina, “0.5BiFeO$_{3}$–0.5PbFe$_{0.5}$Nb$_{0.5}$O$_{3}$ multiferroic ceramic: structure, dielectric and magnetodielectric properties”, Fizika Tverdogo Tela, 62:10 (2020), 1677–1682 ; Phys. Solid State, 62:10 (2020), 1880–1885 |
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6. |
S. P. Zinchenko, D. V. Stryukov, A. V. Pavlenko, V. M. Mukhortov, “The effect of a Ba$_{0.2}$Sr$_{0.8}$TiÎ$_{3}$ sublayer on the structure and electric characteristics of lead zirconate titanate films on the Si(001) substrate”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:23 (2020), 41–44 ; Tech. Phys. Lett., 46:12 (2020), 1196–1199 |
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A. V. Pavlenko, D. V. Stryukov, N. V. Ter-Oganessian, “Structure and ferroelectric properties of thin heteroepitaxial NaNbO$_{3}$ films obtained by RF cathode sputtering”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:2 (2020), 15–18 ; Tech. Phys. Lett., 46:1 (2020), 62–65 |
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2019 |
8. |
A. V. Pavlenko, L. I. Ivleva, D. V. Stryukov, A. P. Kovtun, A. S. Anokhin, P. A. Lykov, “Synthesis, structure, and dielectric characteristics of Sr$_{0.61}$Ba$_{0.39}$Nb$_{2}$O$_{6}$ single crystals and thin films”, Fizika Tverdogo Tela, 61:2 (2019), 376–380 ; Phys. Solid State, 61:2 (2019), 244–248 |
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9. |
A. V. Pavlenko, S. V. Kara-Murza, A. P. Korchikova, A. A. Tikhii, D. V. Stryukov, N. V. Kovtun, “Structure and optical characteristics of barium–strontium niobate films on Al$_2$O$_3$ substrates”, Optics and Spectroscopy, 126:5 (2019), 568–572 ; Optics and Spectroscopy, 126:5 (2019), 487–491 |
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10. |
D. V. Stryukov, A. V. Pavlenko, “Unit-cell deformation under discontinuous deposition of barium–strontium niobate films”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:23 (2019), 23–25 ; Tech. Phys. Lett., 45:12 (2019), 1191–1193 |
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2018 |
11. |
V. M. Mukhortov, Yu. I. Golovko, A. V. Pavlenko, D. V. Stryukov, S. V. Birukov, A. P. Kovtun, S. P. Zinchenko, “The field effect in a metal–ferroelectric–semiconductor system of multilayer ferroelectric films with various structure types”, Fizika Tverdogo Tela, 60:9 (2018), 1741–1747 ; Phys. Solid State, 60:9 (2018), 1786–1792 |
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12. |
V. B. Shirokov, A. V. Pavlenko, D. V. Stryukov, Yu. V. Revinskii, “Optical properties of barium strontium niobate SBN61 films”, Fizika Tverdogo Tela, 60:5 (2018), 993–998 ; Phys. Solid State, 60:5 (2018), 1005–1010 |
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13. |
A. V. Pavlenko, A. V. Turik, L. A. Shilkina, S. P. Kubrin, Yu. V. Rusalev, L. A. Reznichenko, I. N. Andryushina, “Preparation, structure, and dielectric and magnetic properties of SrFe$_{2/3}$W$_{1/3}$O$_{3}$ ceramics”, Fizika Tverdogo Tela, 60:3 (2018), 510–514 ; Phys. Solid State, 60:3 (2018), 515–519 |
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14. |
N. I. Cherkashina, A. V. Pavlenko, “Modification of optical characteristics of a polymer composite material under irradiation”, Zhurnal Tekhnicheskoi Fiziki, 88:4 (2018), 587–591 ; Tech. Phys., 63:4 (2018), 571–575 |
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15. |
A. V. Pavlenko, D. V. Stryukov, V. M. Mukhortov, S. V. Birukov, “Structure and polarization relaxation of Ba$_{0.5}$Sr$_{0.5}$Nb$_{2}$O$_{6}$Si films”, Zhurnal Tekhnicheskoi Fiziki, 88:3 (2018), 418–421 ; Tech. Phys., 63:3 (2018), 407–410 |
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16. |
V. B. Shirokov, S. P. Zinchenko, L. I. Kiseleva, A. V. Pavlenko, “Properties of the barium–strontium titanate films deposited onto the silicon substrate by rf cathode sputtering”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:24 (2018), 81–87 ; Tech. Phys. Lett., 44:12 (2018), 1157–1159 |
17. |
A. V. Pavlenko, A. P. Kovtun, S. P. Zinchenko, D. V. Stryukov, “The structure, dielectric, and optical properties of $c$-oriented SBN-50 films grown on Pt/Al$_{2}$O$_{3}$ substrate”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:11 (2018), 30–37 ; Tech. Phys. Lett., 44:6 (2018), 469–472 |
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2017 |
18. |
A. V. Pavlenko, I. N. Zakharchenko, A. S. Anokhin, Yu. A. Kuprina, L. I. Kiseleva, Yu. I. Yuzyuk, “Structure, the lattice dynamic, and the dielectric characteristics of Sr$_{0.5}$Ba$_{0.5}$Nb$_{2}$O$_{6}$ films”, Fizika Tverdogo Tela, 59:5 (2017), 888–891 ; Phys. Solid State, 59:5 (2017), 909–913 |
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2016 |
19. |
A. V. Turik, A. V. Pavlenko, L. A. Reznichenko, “Maxwell–Wagner relaxation and magnetodielectric properties of Bi$_{0.5}$La$_{0.5}$MnO$_{3}$ ceramics”, Fizika Tverdogo Tela, 58:8 (2016), 1499–1501 ; Phys. Solid State, 58:8 (2016), 1549–1551 |
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20. |
A. V. Turik, A. V. Pavlenko, A. V. Makhiboroda, L. A. Reznichenko, “Dielectric relaxations, magnetodielectric and magnetoelectric interactions in Bi$_{0.6}$La$_{0.4}$MnO$_{3}$ ceramics”, Fizika Tverdogo Tela, 58:1 (2016), 97–101 ; Phys. Solid State, 58:1 (2016), 97–101 |
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21. |
A. V. Pavlenko, V. G. Smotrakov, L. A. Shilkina, S. P. Kubrin, V. V. Eremkin, L. A. Reznichenko, “Structure and dielectric characteristics of PbFe$_{0.5}$Nb$_{0.5}$O$_{3}$ single crystals grown under different conditions”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:19 (2016), 80–87 ; Tech. Phys. Lett., 42:10 (2016), 1013–1017 |
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22. |
A. P. Kovtun, S. P. Zinchenko, A. V. Pavlenko, G. N. Tolmachev, “Optical anisotropy and dielectric parameters of (Ba$_{0.5}$Sr$_{0.5}$)Nb$_{2}$O$_{6}$ films on a Pt(111)/Si(001) substrate”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:11 (2016), 48–55 ; Tech. Phys. Lett., 42:6 (2016), 577–580 |
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