Persons
RUS  ENG    JOURNALS   PEOPLE   ORGANISATIONS   CONFERENCES   SEMINARS   VIDEO LIBRARY   PACKAGE AMSBIB  
 
Kuz'michev, Nikolay Dmitrievich

Statistics Math-Net.Ru
Total publications: 37
Scientific articles: 37

Number of views:
This page:1514
Abstract pages:3247
Full texts:1493
Professor
Doctor of physico-mathematical sciences (2002)
Speciality: 01.04.09 (Physics of low temperatures)
E-mail:
Website: http://old.rim.mrsu.ru/kafedry.php?kafedra=OND&part=sotrudniki

https://www.mathnet.ru/eng/person173703
List of publications on Google Scholar
https://elibrary.ru/author_items.asp?authorid=22923
https://orcid.org/0000-0001-6707-4950

Publications in Math-Net.Ru Citations
2025
1. N. D. Kuz'michev, “Approximation of the function and its derivative relating to the Hölder–Lipschitz class with their Fourier coefficients for a harmonically modulated argument”, Zh. Vychisl. Mat. Mat. Fiz., 65:4 (2025),  417–425  mathnet  elib; Comput. Math. Math. Phys., 65:4 (2025), 663–673
2024
2. M. A. Vasyutin, N. D. Kuz'michev, D. A. Shilkin, “Temperature and magnetic field dependences of the critical current in superconducting films of niobium nitride”, Fizika Tverdogo Tela, 66:7 (2024),  1158–1162  mathnet  elib
3. N. D. Kuz'michev, “Application of the Fourier modulation analysis method to the problem of derivatives recovery”, Zhurnal SVMO, 26:1 (2024),  44–59  mathnet
2022
4. N. D. Kuz'michev, A. A. Shushpanov, M. A. Vasyutin, “Simulation of the features of the magnetic properties of axisummetric granules of hard type II superconductors”, Zhurnal Tekhnicheskoi Fiziki, 92:11 (2022),  1621–1631  mathnet  elib
5. M. A. Vasyutin, N. D. Kuz'michev, D. A. Shilkin, “Experimental method for controlling the overheating of superconducting films under the action of a pulsed current”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 48:14 (2022),  34–36  mathnet  elib
2021
6. M. A. Vasyutin, N. D. Kuzmichev, D. A. Shilkin, “Simulation of the heat transfer process of superconducting films in the resistive state”, Zhurnal Tekhnicheskoi Fiziki, 91:3 (2021),  538–541  mathnet  elib; Tech. Phys., 66:3 (2021), 524–527  scopus 4
7. N. D. Kuzmichev, E. V. Danilova, M. A. Vasyutin, “Numerical analysis of heating by a current pulse of a niobium nitride membrane in its longitudinal section”, Zhurnal SVMO, 23:4 (2021),  424–432  mathnet
8. N. D. Kuzmichev, M. A. Vasyutin, E. V. Danilova, E. A. Lapshina, “Mathematical modeling of heat transfer in the film-substrate-thermostat system during heating of an electrically conductive film by a high-density pulse current”, Zhurnal SVMO, 23:1 (2021),  82–90  mathnet  elib 2
2020
9. N. D. Kuzmichev, A. A. Shushpanov, M. A. Vasyutin, “Mathematical modeling of the magnetic properties of spheroid of hard superconductors of the second kind in the Bean model”, Zhurnal SVMO, 22:4 (2020),  456–462  mathnet  elib 1
2019
10. N. D. Kuzmichev, M. A. Vasyutin, “Differential equations for reconstructing the derived anhysteretic nonlinear I–V characteristics of a semiconductor structure”, Fizika i Tekhnika Poluprovodnikov, 53:1 (2019),  111–114  mathnet  elib; Semiconductors, 53:1 (2019), 106–109 1
11. M. A. Vasyutin, N. D. Kuzmichev, D. A. Shilkin, “Mathematical modeling of current-voltage characteristics of high-temperature superconductors with fractal boundaries of normal phase clusters”, Zhurnal SVMO, 21:4 (2019),  507–519  mathnet
12. N. D. Kuzmichev, A. A. Shushpanov, M. A. Vasyutin, “Mathematical modeling of the magnetic properties of spheroids of hard second kind superconductors in the Bean model”, Zhurnal SVMO, 21:3 (2019),  353–362  mathnet  elib 1
2018
13. M. A. Vasyutin, N. D. Kuzmichev, D. A. Shilkin, “Critical phase-transition current in niobium nitride thin films”, Fizika Tverdogo Tela, 60:11 (2018),  2247–2250  mathnet  elib 6
14. M. A. Vasyutin, N. D. Kuzmichev, D. A. Shilkin, “Magnetic field gain in vortex pinning at fractal interfaces of clusters of high-temperature superconductors”, Zhurnal Tekhnicheskoi Fiziki, 88:2 (2018),  316–318  mathnet  elib; Tech. Phys., 63:2 (2018), 307–309
15. N. D. Kuzmichev, M. A. Vasyutin, A. Yu. Shitov, I. V. Buryanov, “Differential equations for recovery of the average differential susceptibility of superconductors from measurements of the first harmonic of magnetization”, Zhurnal SVMO, 20:3 (2018),  327–337  mathnet 1
16. N. D. Kuzmichev, I. V. Buryanov, M. A. Vasyutin, A. Yu. Shitov, “Numerical modeling of the process of penetration of an external magnetic field into a thick disk-shaped of a high-temperature superconductors on the basis of the random walk algorithm”, Zhurnal SVMO, 20:1 (2018),  88–95  mathnet  elib
2017
17. Mikhael A. Vasyutin, Nikolay D. Kuzmichev, Dmitri A. Shilkin, “Fractal boundaries of vortex pinning clusters in copper-oxide superconductors in magnetic field”, J. Sib. Fed. Univ. Math. Phys., 10:2 (2017),  261–265  mathnet  isi
18. N. D. Kuzmichev, M. A. Vasyutin, E. A. Lapshina, D. A. Shilkin, “Mathematical modeling of voltage harmonicsfor current-voltage characteristics with singularities”, Zhurnal SVMO, 19:4 (2017),  68–78  mathnet  elib
2016
19. M. A. Vasyutin, N. D. Kuz'michev, D. A. Shilkin, “Upper critical field of niobium nitride thin films”, Fizika Tverdogo Tela, 58:2 (2016),  231–234  mathnet  elib; Phys. Solid State, 58:2 (2016), 236–239 11
20. N. D. Kuzmichev, M. A. Vasyutin, D. A. Shilkin, “Experimental determination of the derivative of the current–voltage characteristic of a nonlinear semiconductor structure using modulation Fourier analysis”, Fizika i Tekhnika Poluprovodnikov, 50:6 (2016),  830–833  mathnet  elib; Semiconductors, 50:6 (2016), 815–818 3
21. N. D. Kuzmichev, M. A. Vasyutin, E. A. Lapshina, D. A. Shilkin, “Mathematical modeling of temperature dependence of the second critical field of thin films of niobium nitride”, Zhurnal SVMO, 18:4 (2016),  134–142  mathnet  elib 1
2014
22. N. D. Kuz'michev, M. V. Chugunov, “Magnetic and temperature dependencies of magnetization harmonics of a thin superconducting disk in the model of critical state with critical current density, inversely proportional to field stength squared”, University proceedings. Volga region. Physical and mathematical sciences, 2014, no. 1,  113–127  mathnet
2013
23. N. D. Kuzmichev, M. V. Chugunov, A. A. Fedchenko, “Mathematical modeling of the magnetic response of thin superconducting disc according to critical state model with a critical current density with inverse-square dependance of field magnitude”, Zhurnal SVMO, 15:4 (2013),  25–36  mathnet
2012
24. N. D. Kuz'michev, A. A. Fedchenko, “Mathematical modeling of the magnetization process of a cylindrical superconductor in the Bean model”, University proceedings. Volga region. Physical and mathematical sciences, 2012, no. 1,  139–148  mathnet
25. N. D. Kuz'michev, A. A. Fedchenko, “Magnetization of type-II superconductors in the form of short cylinders and the screening supercurrent distribution in the Bean model”, Zhurnal Tekhnicheskoi Fiziki, 82:5 (2012),  52–56  mathnet  elib; Tech. Phys., 57:5 (2012), 631–635 2
2011
26. N. D. Kuzmichev, A. A. Fedchenko, “Mathematical modeling of the nonlinear response of a short hard superconductor cylinder”, University proceedings. Volga region. Physical and mathematical sciences, 2011, no. 3,  110–119  mathnet 2
27. N. D. Kuzmichev, A. A. Fedchenko, “Mathematical modeling of the distribution of screening current and magnetization hysteresis of the hard type II superconductors in the form of short cylinders in Bean approximation”, Zhurnal SVMO, 13:4 (2011),  25–34  mathnet 2
28. N. D. Kuzmichev, “Application of the Taylor-Fourier series for numerical and experimental calculation of investigation dependance derivatives”, Zhurnal SVMO, 13:2 (2011),  70–80  mathnet 3
29. N. D. Kuzmichev, A. A. Fedchenko, “Numerical simulation of magnetization harmonics of disc-shaped hard type-II superconductor with approximation of magnetic field screening in the sample center”, Zhurnal SVMO, 13:1 (2011),  55–62  mathnet 1
2008
30. A. I. Golovashkin, N. D. Kuz'michev, V. V. Slavkin, “Controllable generation of harmonics by means of YBa$_2$Cu$_3$O$_{7-x}$ superconductors”, Zhurnal Tekhnicheskoi Fiziki, 78:10 (2008),  65–69  mathnet  elib; Tech. Phys., 53:10 (2008), 1314–1318 4
31. A. I. Golovashkin, N. D. Kuz'michev, V. V. Slavkin, “Generation of harmonics by means of YBa$_2$Cu$_3$O$_{7-x}$ high-temperature superconducting polycrystals”, Zhurnal Tekhnicheskoi Fiziki, 78:1 (2008),  59–62  mathnet  elib; Tech. Phys., 53:1 (2008), 55–58 2
2007
32. N. D. Kuz'michev, V. V. Slavkin, “Magnetization harmonics for YBa$_2$Cu$_3$O$_{7-x}$ textured polycrystals above the superconducting transition temperature”, Fizika Tverdogo Tela, 49:9 (2007),  1549–1553  mathnet  elib; Phys. Solid State, 49:9 (2007), 1623–1627 2
2006
33. M. A. Vasyutin, A. I. Golovashkin, N. D. Kuz'michev, “Nonlinearity of the current-voltage characteristics for YBa$_2$Cu$_3$O$_{7-x}$ single crystals and the Berezinskii-Kosterlitz-Thouless transition”, Fizika Tverdogo Tela, 48:12 (2006),  2128–2135  mathnet  elib; Phys. Solid State, 48:12 (2006), 2250–2259 5
34. A. I. Golovashkin, N. D. Kuz'michev, V. V. Slavkin, “Simple high-temperature superconducting yttrium cuprate-based device for measuring weak magnetic fields”, Zhurnal Tekhnicheskoi Fiziki, 76:3 (2006),  81–85  mathnet  elib; Tech. Phys., 51:3 (2006), 373–377 5
2001
35. N. D. Kuzmichev, “Critical state of Josephson medium”, Pis'ma v Zh. Èksper. Teoret. Fiz., 74:5 (2001),  291–295  mathnet; JETP Letters, 74:5 (2001), 262–266  scopus 19
1990
36. A. I. Golovashkin, N. D. Kuz'michev, I. S. Levchenko, G. P. Motulevich, V. V. Slavkin, “Low-frequency magnetic field study of nonlinearity in the magnetic susceptibility of $\mathrm{YBa}_{2}\mathrm{Cu}_{3}\mathrm{O}_{7-x}$ ceramic samples”, Fizika Tverdogo Tela, 32:5 (1990),  1374–1377  mathnet
1989
37. A. I. Golovashkin, N. D. Kuz'michev, I. S. Levchenko, G. P. Motulevich, V. V. Slavkin, “Nonlinear magnetic susceptibility of the $\mathrm{Y}$$\mathrm{Ba}$$\mathrm{Cu}$$\mathrm{O}$ ceramics in the superconducting state at low frequencies”, Fizika Tverdogo Tela, 31:4 (1989),  233–235  mathnet

Organisations
 
  Contact us:
 Terms of Use  Registration to the website  Logotypes © Steklov Mathematical Institute RAS, 2026