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Most published authors (scientific articles only) of the journal
|
| 1. |
M. V. Shamolin |
17 |
| 2. |
I. B. Petrov |
15 |
| 3. |
A. L. Semenov |
13 |
| 4. |
V. F. Tishkin |
11 |
| 5. |
B. N. Chetverushkin |
11 |
| 6. |
V. I. Bogachev |
10 |
| 7. |
A. V. Grabovoy |
9 |
| 8. |
A. M. Raigorodskii |
9 |
| 9. |
E. V. Burnaev |
9 |
| 10. |
G. A. Chechkin |
9 |
| 11. |
V. I. Berdyshev |
8 |
| 12. |
A. V. Gasnikov |
8 |
| 13. |
G. A. Mikhailov |
8 |
| 14. |
V. G. Romanov |
8 |
| 15. |
A. G. Chechkina |
8 |
| 16. |
V. V. Ostapenko |
8 |
| 17. |
M. E. Zhukovskii |
7 |
| 18. |
A. A. Zlotnik |
7 |
| 19. |
Yu. A. Kriksin |
7 |
| 20. |
G.V. Fedorov |
7 |
| 21. |
A. N. Beznosikov |
7 |
| 22. |
A. I. Panov |
7 |
| 23. |
N. A. Rautian |
7 |
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40 most published authors of the journal |
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| Most cited authors of the journal |
| 1. |
M. V. Shamolin |
222 |
| 2. |
I. V. Oseledets |
216 |
| 3. |
S. A. Budennyy |
191 |
| 4. |
I. S. Barsola |
182 |
| 5. |
I. V. Egorov |
182 |
| 6. |
A. A. Kosterina |
182 |
| 7. |
N. N. Zakharenko |
178 |
| 8. |
A. N. Korovin |
178 |
| 9. |
D. V. Dimitrov |
173 |
| 10. |
V. S. Akhripkin |
172 |
| 11. |
L. E. Zhukov |
172 |
| 12. |
V. D. Lazarev |
172 |
| 13. |
I. V. Pavlov |
172 |
| 14. |
O. A. Plosskaya |
172 |
| 15. |
O. G. Smolyanov |
54 |
| 16. |
I. B. Petrov |
49 |
| 17. |
A. M. Raigorodskii |
39 |
| 18. |
B. N. Chetverushkin |
39 |
| 19. |
V. G. Chirskii |
37 |
| 20. |
V. S. Fanaskov |
36 |
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40 most cited authors of the journal |
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| Most cited articles of the journal |
| 1. |
eco2AI: carbon emissions tracking of machine learning models as the first step towards sustainable AI S. A. Budennyy, V. D. Lazarev, N. N. Zakharenko, A. N. Korovin, O. A. Plosskaya, D. V. Dimitrov, V. S. Akhripkin, I. V. Pavlov, I. V. Oseledets, I. S. Barsola, I. V. Egorov, A. A. Kosterina, L. E. Zhukov Dokl. RAN. Math. Inf. Proc. Upr., 2022, 508, 134–145 |
172 |
| 2. |
New cases of integrable odd-order systems with dissipation M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2020, 491, 95–101 |
39 |
| 3. |
Spectral neural operators V. S. Fanaskov, I. V. Oseledets Dokl. RAN. Math. Inf. Proc. Upr., 2023, 514:2, 72–79 |
36 |
| 4. |
New cases of homogeneous integrable systems with dissipation on tangent bundles of three-dimensional manifolds M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2020, 495, 84–90 |
30 |
| 5. |
New cases of homogeneous integrable systems with dissipation on tangent bundles of two-dimensional manifolds M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2020, 494, 105–111 |
29 |
| 6. |
New cases of homogeneous integrable systems with dissipation on tangent bundles of four-dimensional manifolds M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2021, 497, 23–30 |
26 |
| 7. |
Application of pretrained large language models in embodied artificial intelligence A. K. Kovalev, A. I. Panov Dokl. RAN. Math. Inf. Proc. Upr., 2022, 508, 94–99 |
21 |
| 8. |
New cases of integrability of systems of geodesics and potential and dissipative systems on tangent bundles of finite-dimensional manifolds M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2021, 500, 78–86 |
21 |
| 9. |
Random quantization of Hamiltonian systems J. E. Gough, Yu. N. Orlov, V. Zh. Sakbaev, O. G. Smolyanov Dokl. RAN. Math. Inf. Proc. Upr., 2021, 498, 31–36 |
21 |
| 10. |
Tensor invariants of geodesic, potential, and dissipative systems on tangent bundles of two-dimensional manifolds M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2021, 501, 89–94 |
20 |
| 11. |
Increased integrability of the gradient of the solution to the Zaremba problem for the Poisson equation Yu. A. Alkhutov, G. A. Chechkin Dokl. RAN. Math. Inf. Proc. Upr., 2021, 497, 3–6 |
19 |
| 12. |
Schrödinger quantization of infinite-dimensional Hamiltonian systems with a nonquadratic Hamiltonian function O. G. Smolyanov, N. N. Shamarov Dokl. RAN. Math. Inf. Proc. Upr., 2020, 492, 65–69 |
18 |
| 13. |
Invariant volume forms of variable dissipation systems with three degrees of freedom M. V. Shamolin Dokl. RAN. Math. Inf. Proc. Upr., 2022, 507, 86–92 |
16 |
| 14. |
Classical solutions of hyperbolic equations with nonlocal potentials N. V. Zaitseva Dokl. RAN. Math. Inf. Proc. Upr., 2021, 498, 37–40 |
16 |
| 15. |
Topological modeling of integrable systems by billiards: realization of numerical invariants V. V. Vedyushkina, V. A. Kibkalo, A. T. Fomenko Dokl. RAN. Math. Inf. Proc. Upr., 2020, 493, 9–12 |
16 |
| 16. |
Young duality and aggregation of balances A. A. Shananin Dokl. RAN. Math. Inf. Proc. Upr., 2020, 493, 81–85 |
16 |
| 17. |
On global classical solutions of hyperbolic differential-difference equations N. V. Zaitseva Dokl. RAN. Math. Inf. Proc. Upr., 2020, 491, 44–46 |
16 |
| 18. |
Application of a numerical-asymptotic approach to the problem of restoring the parameters of a local stationary source of anthropogenic pollution M. A. Davydova, N. F. Elansky, S. A. Zakharova, O. V. Postylyakov Dokl. RAN. Math. Inf. Proc. Upr., 2021, 496, 34–39 |
15 |
| 19. |
On the existence of a global solution of a hyperbolic problem O. S. Rozanova, E. V. Chizhonkov Dokl. RAN. Math. Inf. Proc. Upr., 2020, 492, 97–100 |
15 |
| 20. |
Uniqueness of solutions of initial-boundary value problems for parabolic systems with Dini-continuous coefficients in domains on the plane E. A. Baderko, S. I. Saharov Dokl. RAN. Math. Inf. Proc. Upr., 2022, 503, 26–29 |
14 |
| 21. |
The second boundary value problem for differential-difference equations A. L. Skubachevskii, N. O. Ivanov Dokl. RAN. Math. Inf. Proc. Upr., 2021, 500, 74–77 |
14 |
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40 most cited articles of the journal |
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| Most requested articles of the journal |
|
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| 1. |
Sub-Riemannian Engel sphere Yu. L. Sachkov, A. Yu. Popov Dokl. RAN. Math. Inf. Proc. Upr., 2021, 500, 97–101 | 18 |
| 2. |
On Gaussian transition operators G. A. Alekseev, K. A. Afonin, V. I. Bogachev Dokl. RAN. Math. Inf. Proc. Upr., 2021, 500, 10–15 | 17 |
| 3. |
On condensations onto $\sigma$-compact spaces A. E. Lipin, A. V. Osipov Dokl. RAN. Math. Inf. Proc. Upr., 2022, 506, 57–61 | 15 |
| 4. |
On some modifications of Arnold's cat map S. D. Glyzin, A. Yu. Kolesov Dokl. RAN. Math. Inf. Proc. Upr., 2021, 500, 26–30 | 15 |
| 5. |
One problem of extremal functional interpolation and the Favard constants Yu. S. Volkov Dokl. RAN. Math. Inf. Proc. Upr., 2020, 495, 34–37 | 14 |
| 6. |
Planning and learning in multi-agent path finding K. Yakovlev, A. Andreychuk, A. A. Skrynnik, A. I. Panov Dokl. RAN. Math. Inf. Proc. Upr., 2022, 508, 88–93 | 13 |
| 7. |
ESGify: Automated classification of environmental, social and corporate governance risks A. Kazakov, S. Denisova, I. Barsola, E. Kalugina, I. Molchanova, I. Egorov, A. Kosterina, E. Tereshchenko, L. Shutikhina, I. Doroshchenko, N. Sotiriadi, S. Budennyy Dokl. RAN. Math. Inf. Proc. Upr., 2023, 514:2, 417–430 | 11 |
| 8. |
Operator spectrum transformation in Hartree–Fock and Kohn–Sham equations A. A. Danshin, A. A. Kovalishin Dokl. RAN. Math. Inf. Proc. Upr., 2023, 509, 23–27 | 11 |
| 9. |
Periodic ultradiscrete plane transformations V. A. Bykovskii Dokl. RAN. Math. Inf. Proc. Upr., 2021, 500, 23–25 | 10 |
| 10. |
Features of the statistical distribution of a quasi-harmonic signal phase T. V. Yakovleva Dokl. RAN. Math. Inf. Proc. Upr., 2021, 497, 35–37 | 9 |
|
| Total publications: |
758 |
| Scientific articles: |
748 |
| Authors: |
1085 |
| Citations: |
1988 |
| Cited articles: |
439 |
 |
Impact Factor Web of Science |
|
for 2025:
0.800 |
|
for 2024:
0.600 |
|
for 2023:
0.500 |
|
for 2021:
0.486 |
|
for 2020:
0.619 |
|
for 2019:
0.548 |
 |
Scopus Metrics |
|
2025 |
CiteScore |
1.500 |
|
2025 |
SNIP |
0.577 |
|
2025 |
SJR |
0.305 |
|
2024 |
CiteScore |
1.100 |
|
2024 |
SNIP |
0.608 |
|
2024 |
SJR |
0.389 |
|
2023 |
CiteScore |
1.000 |
|
2023 |
SNIP |
0.589 |
|
2023 |
SJR |
0.458 |
|
2022 |
SJR |
0.444 |
|
2021 |
SJR |
0.385 |
|
2020 |
SJR |
0.765 |
|