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Publications in Math-Net.Ru |
Citations |
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2020 |
1. |
S. I. Popkov, A. A. Krasikov, S. V. Semenov, A. A. Doubrovskii, S. S. Yakushkin, V. L. Kirillov, O. N. Mart'yanov, D. A. Balaev, “General regularities and differences in the behavior of the dynamic magnetization switching of ferrimagnetic (CoFe$_2$O$_4$) and antiferromagnetic (NiO) nanoparticles”, Fizika Tverdogo Tela, 62:9 (2020), 1354–1360 ; Phys. Solid State, 62:9 (2020), 1518–1524 |
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2. |
D. A. Balaev, A. A. Krasikov, A. D. Balaev, S. V. Stolyar, V. P. Ladygina, R. S. Iskhakov, “Features of relaxation of the remanent magnetization of antiferromagnetic nanoparticles by the example of ferrihydrite”, Fizika Tverdogo Tela, 62:7 (2020), 1043–1049 ; Phys. Solid State, 62:7 (2020), 1172–1178 |
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3. |
S. I. Popkov, A. A. Krasikov, S. V. Semenov, A. A. Doubrovskii, S. S. Yakushkin, V. L. Kirillov, O. N. Mart'yanov, D. A. Balaev, “Features of the pulsed magnetization switching in a high-coercivity material based on $\varepsilon$-Fe$_{2}$O$_{3}$ nanoparticles”, Fizika Tverdogo Tela, 62:3 (2020), 395–402 ; Phys. Solid State, 62:3 (2020), 445–453 |
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4. |
D. A. Balaev, S. V. Semenov, A. A. Doubrovskii, A. A. Krasikov, S. I. Popkov, S. S. Yakushkin, V. L. Kirillov, O. N. Mart'yanov, “Synthesis and magnetic properties of the core–shell Fe$_{3}$O$_{4}$/CoFe$_{2}$O$_{4}$ nanoparticles”, Fizika Tverdogo Tela, 62:2 (2020), 235–240 ; Phys. Solid State, 62:2 (2020), 285–290 |
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2018 |
5. |
D. A. Balaev, A. A. Krasikov, D. A. Velikanov, S. I. Popkov, N. V. Dubynin, S. V. Stolyar, V. P. Ladygina, R. N. Yaroslavtsev, “Pulsed field-induced magnetization switching in antiferromagnetic ferrihydrite nanoparticles”, Fizika Tverdogo Tela, 60:10 (2018), 1931–1936 ; Phys. Solid State, 60:10 (2018), 1973–1978 |
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2017 |
6. |
D. A. Balaev, S. I. Popkov, A. A. Krasikov, A. D. Balaev, A. A. Doubrovskii, S. V. Stolyar, R. N. Yaroslavtsev, V. P. Ladygina, R. S. Iskhakov, “Temperature behavior of the antiferromagnetic susceptibility of nanoferrihydrite from the measurements of the magnetization curves in fields of up to 250 kOe”, Fizika Tverdogo Tela, 59:10 (2017), 1920–1926 ; Phys. Solid State, 59:10 (2017), 1940–1946 |
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7. |
D. A. Balaev, A. A. Doubrovskii, A. A. Krasikov, S. I. Popkov, A. D. Balaev, K. A. Shaykhutdinov, V. L. Kirillov, O. N. Mart'yanov, “Magnetic properties of NiO nano particles: Contributions of the antiferromagnetic and ferromagnetic subsystems in different magnetic field ranges up to 250 kOe”, Fizika Tverdogo Tela, 59:8 (2017), 1524–1529 ; Phys. Solid State, 59:8 (2017), 1547–1552 |
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8. |
S. V. Stolyar, R. N. Yaroslavtsev, R. S. Iskhakov, O. A. Bayukov, D. A. Balaev, A. A. Doubrovskii, A. A. Krasikov, V. P. Ladygina, A. M. Vorotynov, M. N. Volochaev, “Magnetic and resonance properties of ferrihydrite nanoparticles doped with cobalt”, Fizika Tverdogo Tela, 59:3 (2017), 538–545 ; Phys. Solid State, 59:3 (2017), 555–563 |
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2016 |
9. |
D. A. Balaev, A. A. Krasikov, S. V. Stolyar, R. S. Iskhakov, V. P. Ladygina, R. N. Yaroslavtsev, O. A. Bayukov, A. M. Vorotynov, M. N. Volochaev, A. A. Doubrovskii, “Change in the magnetic properties of nanoferrihydrite with an increase in the volume of nanoparticles during low-temperature annealing”, Fizika Tverdogo Tela, 58:9 (2016), 1724–1732 ; Phys. Solid State, 58:9 (2016), 1782–1791 |
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10. |
D. A. Balaev, A. A. Krasikov, A. A. Doubrovskii, S. V. Semenov, S. I. Popkov, S. V. Stolyar, R. S. Iskhakov, V. P. Ladygina, R. N. Yaroslavtsev, “Specific features of magnetic properties of ferrihydrite nanoparticles of bacterial origin: A shift of the hysteresis loop”, Fizika Tverdogo Tela, 58:2 (2016), 280–284 ; Phys. Solid State, 58:2 (2016), 287–292 |
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11. |
D. A. Balaev, K. A. Sablina, A. L. Freydman, A. A. Krasikov, A. F. Bovina, “Interrelation of anisotropy of magnetic properties and magnetodielectric effect in a Cu$_{3}$B$_{2}$O$_{6}$ single crystal”, Fizika Tverdogo Tela, 58:2 (2016), 277–279 ; Phys. Solid State, 58:2 (2016), 284–286 |
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2013 |
12. |
D. A. Balaev, A. A. Doubrovskii, A. A. Krasikov, S. V. Stolyar, R. S. Iskhakov, V. P. Ladygina, E. D. Khilazheva, “Mechanism of the formation of an uncompensated magnetic moment in bacterial ferrihydrite nanoparticles”, Pis'ma v Zh. Èksper. Teoret. Fiz., 98:3 (2013), 160–164 ; JETP Letters, 98:3 (2013), 139–142 |
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