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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
B. Kh. Khannanov, E. I. Golovenchits, V. A. Sanina, “Similarity of mechanisms of formation of phase separation domains in $_3$Fe$_5$O$_{12}$, EuFeO$_3$, YCrO$_3$, Eu$_2$CuO$_4$, and RMn$_2$O$_5$ multiferroics (brief review)”, Pis'ma v Zh. Èksper. Teoret. Fiz., 115:4 (2022), 262–269 ; JETP Letters, 115:4 (2022), 231–238 |
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2021 |
2. |
B. Kh. Khannanov, V. A. Sanina, E. I. Golovenchits, S. G. Lushnikov, “Phase transitions and phase transformations in the phase separation nanoregions in ErMn$_{2}$O$_{5}$ multiferroics”, Fizika Tverdogo Tela, 63:11 (2021), 1863–1873 |
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2020 |
3. |
B. Kh. Khannanov, E. I. Golovenchits, V. A. Sanina, “Frustration of exchange-striction ferroelectric ordering and growth of electric polarization of phase separation domains in $R_{0.8}$Ce$_{0.2}$Mn$_{2}$O$_{5}$ ($R$ = Er, Tb) solid solutions”, Fizika Tverdogo Tela, 62:4 (2020), 574–583 ; Phys. Solid State, 62:4 (2020), 660–669 |
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4. |
B. Kh. Khannanov, E. I. Golovenchits, V. A. Sanina, “Effect of rare-earth ions on an electric polarization induced by the phase separation domains in $R$Mn$_{2}$O$_{5}$ ($R$ = Er, Tb)”, Fizika Tverdogo Tela, 62:2 (2020), 257–266 ; Phys. Solid State, 62:2 (2020), 308–317 |
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5. |
E. I. Golovenchits, B. Kh. Khannanov, V. A. Sanina, “Effect of the optical pumping and magnetic field on the states of phase separation domains in Eu$_{0.8}$Ce$_{0.2}$Mn$_2$O$_5$”, Pis'ma v Zh. Èksper. Teoret. Fiz., 111:12 (2020), 826–832 ; JETP Letters, 111:12 (2020), 709–714 |
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2019 |
6. |
V. A. Sanina, B. Kh. Khannanov, E. I. Golovenchits, M. P. Scheglov, “Electric polarization in ErCrO$_{3}$ induced by restricted polar domains”, Fizika Tverdogo Tela, 61:3 (2019), 501–509 ; Phys. Solid State, 61:3 (2019), 370–378 |
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7. |
V. A. Sanina, B. Kh. Khannanov, E. I. Golovenchits, M. P. Scheglov, “Electric polarization in YCrO$_{3}$ induced by restricted polar domains of magnetic and structural natures”, Fizika Tverdogo Tela, 61:1 (2019), 95–103 ; Phys. Solid State, 60:12 (2018), 2532–2540 |
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8. |
S. I. Vorob'ev, A. L. Getalov, E. I. Golovenchits, E. N. Komarov, S. A. Kotov, V. A. Sanina, G. V. Shcherbakov, “$\mu SR$ study of the dynamics of internal magnetic correlations in Tb(Bi)MnO$_3$ multiferroic in magnetically ordered and paramagnetic states”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:2 (2019), 118–125 ; JETP Letters, 110:2 (2019), 133–139 |
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2018 |
9. |
V. A. Sanina, B. Kh. Khannanov, E. I. Golovenchits, M. P. Scheglov, “Frozen superparaelectric state of local polar regions in GdMn$_{2}$O$_{5}$ and Gd$_{0.8}$Ce$_{0.2}$Mn$_{2}$O$_{5}$”, Fizika Tverdogo Tela, 60:3 (2018), 531–542 ; Phys. Solid State, 60:3 (2018), 537–548 |
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2017 |
10. |
V. A. Sanina, B. Kh. Khannanov, E. I. Golovenchits, “Magnetic dynamics of phase separation domains in GdMn$_{2}$O$_{5}$ and Gd$_{0.8}$Ce$_{0.2}$Mn$_{2}$O$_{5}$ multiferroics”, Fizika Tverdogo Tela, 59:10 (2017), 1932–1939 ; Phys. Solid State, 59:10 (2017), 1952–1960 |
10
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11. |
D. S. Andrievskii, S. I. Vorob'ev, A. L. Getalov, E. I. Golovenchits, E. N. Komarov, S. A. Kotov, V. A. Sanina, G. V. Shcherbakov, “Anomalously strong relaxation of the polarization of muons in the magnetically ordered and paramagnetic states of the TbMnO$_3$ multiferroic”, Pis'ma v Zh. Èksper. Teoret. Fiz., 106:5 (2017), 275–281 ; JETP Letters, 106:5 (2017), 295–301 |
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2016 |
12. |
B. Kh. Khannanov, V. A. Sanina, E. I. Golovenchits, M. P. Scheglov, “Room-temperature electric polarization induced by phase separation in multiferroic GdMn$_2$O$_5$”, Pis'ma v Zh. Èksper. Teoret. Fiz., 103:4 (2016), 274–279 ; JETP Letters, 103:4 (2016), 248–253 |
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2014 |
13. |
V. A. Sanina, E. I. Golovenchits, B. Kh. Khannanov, “Temperature evolution of polar states in GdMn$_2$O$_5$ and
Gd$_{0.8}$Ce$_{0.2}$Mn$_2$O$_5$”, Pis'ma v Zh. Èksper. Teoret. Fiz., 100:6 (2014), 451–456 ; JETP Letters, 100:6 (2014), 407–412 |
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2012 |
14. |
E. I. Golovenchits, V. A. Sanina, V. G. Zalesskii, “Spin-wave resonances in Eu$_{0.8}$Ce$_{0.2}$Mn$_2$O$_5$ and EuMn$_2$O$_5$ multiferroics”, Pis'ma v Zh. Èksper. Teoret. Fiz., 95:7 (2012), 429–434 ; JETP Letters, 95:7 (2012), 386–390 |
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2010 |
15. |
S. I. Vorob'ev, E. I. Golovenchits, V. P. Koptev, E. N. Komarov, S. A. Kotov, V. A. Sanina, G. V. Shcherbakov, “Muon-spin-relaxation investigation of EuMn<sub>2</sub>O<sub>5</sub>”, Pis'ma v Zh. Èksper. Teoret. Fiz., 91:10 (2010), 561–566 ; JETP Letters, 91:10 (2010), 512–517 |
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2006 |
16. |
E. I. Golovenchits, V. A. Sanina, “Magnetic-field-induced phase transition in Tb<sub>0.95</sub>Bi<sub>0.05</sub>MnO<sub>3+δ</sub> multiferroic”, Pis'ma v Zh. Èksper. Teoret. Fiz., 84:4 (2006), 222–227 ; JETP Letters, 84:4 (2006), 190–194 |
12
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2005 |
17. |
E. I. Golovenchits, V. A. Sanina, “Dielectric and magnetic properties of the multiferroic Tb<sub>(1−<i>x</i>)</sub>Bi<sub>x</sub>MnO<sub>3</sub>: Electric dipole glass and self-organization of charge carriers”, Pis'ma v Zh. Èksper. Teoret. Fiz., 81:10 (2005), 630–635 ; JETP Letters, 81:10 (2005), 509–513 |
10
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2003 |
18. |
E. I. Golovenchits, V. A. Sanina, “Magnetic and magneto-lattice dynamics in GdMn$_2$O$_5$”, Pis'ma v Zh. Èksper. Teoret. Fiz., 78:2 (2003), 99–102 ; JETP Letters, 78:2 (2003), 88–91 |
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2001 |
19. |
E. I. Golovenchits, V. A. Sanina, “Spin dynamics and structural phase transitions in quasi-2D antiferromagnets R$_2$CuO$_4$ (R${}={}$Pr, Sm, and Eu)”, Pis'ma v Zh. Èksper. Teoret. Fiz., 74:1 (2001), 22–25 ; JETP Letters, 74:1 (2001), 20–23 |
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1992 |
20. |
E. I. Golovenchits, N. V. Morozov, V. A. Sanina, L. M. Sapozhnikova, “Correlation between the magnetic and dielectric properties of $\mathrm{EuMn}_{2}\mathrm{O}_{5}$ single crystals”, Fizika Tverdogo Tela, 34:1 (1992), 108–114 |
3
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21. |
A. V. Babinskii, E. I. Golovenchits, N. V. Morozov, V. A. Sanina, L. M. Sapozhnikova, “Magnetic properties of $\mathrm{Eu}_{2}\mathrm{CuO}_{4}$ crystals”, Fizika Tverdogo Tela, 34:1 (1992), 60–65 |
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1991 |
22. |
A. I. Belyaeva, V. P. Yur'ev, A. L. Foshchan, E. I. Golovenchits, N. V. Morozov, I. L. Shul'pina, M. P. Shcheglov, “Correlation of inhomogeneities in the superconducting properties with the variation of the lattice parameter $C$ in nontwinning $\mathrm{YBa}_{2}\mathrm{Cu}_{3-z}\mathrm{Al}_{y}\mathrm{O}_{6+x}$ crystals”, Fizika Tverdogo Tela, 33:10 (1991), 2896–2906 |
23. |
A. A. Levin, Yu. I. Smolin, Yu. F. Shepelev, L. M. Sapozhnikova, P. P. Syrnikov, E. I. Golovenchits, V. A. Sanina, “Structure and superconductive properties of $\mathrm{RBa}_{2}\mathrm{Cu}_{3-x}\mathrm{Al}_{y}\mathrm{O}_{6+x}(\mathrm{R}=\mathrm{Y},\mathrm{Gd},\mathrm{Eu})$”, Fizika Tverdogo Tela, 33:5 (1991), 1434–1442 |
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1989 |
24. |
E. I. Golovenchits, V. A. Sanina, L. M. Sapozhnikova, P. P. Syrnikov, “Dynamic magnetic susceptibility of $\mathrm{RBa}_{2}\mathrm{Cu}_{3}\mathrm{O}_{7-\delta}(\mathrm{R}=\mathrm{Y},\mathrm{Gd},\mathrm{Eu})$ in superconducting state”, Fizika Tverdogo Tela, 31:3 (1989), 285–287 |
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1988 |
25. |
V. A. Sanina, L. M. Sapozhnikova, E. I. Golovenchits, N. V. Morozov, “Series of phase transitions in $\mathrm{EuMn}_{2}\mathrm{O}_{5}$”, Fizika Tverdogo Tela, 30:10 (1988), 3015–3023 |
4
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1987 |
26. |
E. I. Golovenchits, V. A. Sanina, A. A. Levin, Yu. F. Shepelev, Yu. I. Smolin, “Isostructural phase transition in $\mathrm{EuCrO}_{3}$ with variation in the concentration of thermally excited $\mathrm{Eu}^{3+}(^{7}F_{1})$ ions”, Fizika Tverdogo Tela, 29:12 (1987), 3553–3562 |
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1986 |
27. |
E. I. Golovenchits, V. A. Sanina, “Magnetic and electrodipole coexistence in $\mathrm{EuCrO}_{3}$ after optical pumping”, Fizika Tverdogo Tela, 28:3 (1986), 713–719 |
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1985 |
28. |
E. I. Golovenchits, V. A. Sanina, “Phase boundary observation after photo-induced phase transition in $\mathrm{EuCrO}_{3}$”, Fizika Tverdogo Tela, 27:1 (1985), 212–213 |
29. |
E. I. Golovenchits, V. A. Sanina, G. A. Smolenskii, “Electric-dipolar glass in crystals with Jahn-Teller ions”, UFN, 146:2 (1985), 349–351 ; Phys. Usp., 28:6 (1985), 526–527 |
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1984 |
30. |
E. I. Golovenchits, V. A. Sanina, “Polarization $f$–$d$–$f$-exchange in RE orthochromites”, Fizika Tverdogo Tela, 26:6 (1984), 1640–1648 |
1
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1982 |
31. |
G. A. Smolenskii, E. I. Golovenchits, V. A. Sanina, “Magnetic phase transition induced by high-power optical pumping”, UFN, 137:4 (1982), 746–747 ; Phys. Usp., 25:8 (1982), 632–633 |
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