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2-years impact-factor Math-Net.Ru of «Izvestiya Rossiiskoi Akademii Nauk. Seriya Matematicheskaya» journal, 2019
2-years impact-factor Math-Net.Ru of the journal in 2019 is calculated
as the number of citations in 2019 to the scientific papers published during
2017–2018.
The table below contains the list of citations in 2019 to the papers
published in 2017–2018. We take into account all citing publications
we found from different sources, mostly from references lists available
on Math-Net.Ru. Both original and translation versions are taken into account.
The impact factor Math-Net.Ru may change when new citations to a year
given are found.
| Year |
2-years impact-factor Math-Net.Ru |
Scientific papers |
Citations |
Citated papers |
Journal Self-citations |
| 2019 |
1.301 |
93 |
121 |
47 |
5.8% |
|
|
|
| N |
Citing pulication |
|
Cited paper |
|
| 1. |
H. Gunawan, Ch. Schwanke, “The Hardy-Littlewood maximal operator on discrete Morrey spaces”, Mediterr. J. Math., 16:1 (2019), 24, 12 pp.  |
→ |
A discrete version of local Morrey spaces E. I. Berezhnoi Izv. RAN. Ser. Mat., 81:1 (2017), 3–30
|
| 2. |
Springer Proceedings in Mathematics & Statistics, 291, Modern Methods in Operator Theory and Harmonic Analysis, 2019, 137  |
→ |
A discrete version of local Morrey spaces E. I. Berezhnoi Izv. RAN. Ser. Mat., 81:1 (2017), 3–30
|
|
| 3. |
F. L. Bakharev, S. A. Nazarov, “Asimptotika sobstvennykh chisel dlinnykh plastin Kirkhgofa s zaschemlennymi krayami”, Matem. sb., 210:4 (2019), 3–26  |
→ |
The spectra of rectangular lattices of quantum waveguides S. A. Nazarov Izv. RAN. Ser. Mat., 81:1 (2017), 31–92
|
| 4. |
S. A. Nazarov, “Asimptotika sobstvennykh chisel i funktsii
tonkoi kvadratnoi reshetki Dirikhle s iskrivlennoi peremychkoi”, Matem. zametki, 105:4 (2019), 564–588  |
→ |
The spectra of rectangular lattices of quantum waveguides S. A. Nazarov Izv. RAN. Ser. Mat., 81:1 (2017), 31–92
|
| 5. |
S. A. Nazarov, A. S. Slutskii, “The Elastic Polarization Matrix for a Junction of Isotropic Half-Strips”, J Math Sci, 239:3 (2019), 349  |
→ |
The spectra of rectangular lattices of quantum waveguides S. A. Nazarov Izv. RAN. Ser. Mat., 81:1 (2017), 31–92
|
| 6. |
S. A. Nazarov, “Waves in a Plane Rectangular Lattice of Thin Elastic Waveguides”, J Math Sci, 242:2 (2019), 227  |
→ |
The spectra of rectangular lattices of quantum waveguides S. A. Nazarov Izv. RAN. Ser. Mat., 81:1 (2017), 31–92
|
|
| 7. |
A. N. Blagovisnaya, “Klassicheskie radikaly i tsentroid Martindeila artinovykh i neterovykh algebr Li”, Chebyshevskii sb., 20:1 (2019), 313–353  |
→ |
On special Lie algebras having a faithful module with Krull dimension O. A. Pikhtilkova, S. A. Pikhtilkov Izv. RAN. Ser. Mat., 81:1 (2017), 93–100
|
|
| 8. |
Kudratillo S. Fayazov, Yashin K. Khudayberganov, “Ill-posed boundary-value problem for a system of partial differential equations with two degenerate lines”, Zhurn. SFU. Ser. Matem. i fiz., 12:3 (2019), 392–401  |
→ |
On the theory of the Frankl problem for equations of mixed type K. B. Sabitov Izv. RAN. Ser. Mat., 81:1 (2017), 101–138
|
|
| 9. |
K O Politov, “Sturm – Liouville integrable operators, generated by generalized Dunkl operators”, J. Phys.: Conf. Ser., 1203 (2019), 012104  |
→ |
Dunkl–Darboux differential-difference operators S. P. Khekalo Izv. RAN. Ser. Mat., 81:1 (2017), 161–182
|
|
| 10. |
Larry Gogoladze, Vakhtang Tsagareishvili, “Differentiable functions and general orthonormal systems”, Mosc. Math. J., 19:4 (2019), 695–707  |
→ |
On Fourier coefficients of functions with respect to general orthonormal systems V. Sh. Tsagareishvili Izv. RAN. Ser. Mat., 81:1 (2017), 183–202
|
| 11. |
L. Gogoladze, V. Tsagareishvili, “General Fourier coefficients”, Acta Math. Hung., 158:1 (2019), 109–131  |
→ |
On Fourier coefficients of functions with respect to general orthonormal systems V. Sh. Tsagareishvili Izv. RAN. Ser. Mat., 81:1 (2017), 183–202
|
| 12. |
Sami M. Al-Jaber, Iyad Saadeddin, “Fourier-Series Representation of Discontinuous Functions and Its Physical Applications”, AM, 10:04 (2019), 226  |
→ |
On Fourier coefficients of functions with respect to general orthonormal systems V. Sh. Tsagareishvili Izv. RAN. Ser. Mat., 81:1 (2017), 183–202
|
|
| 13. |
A. G. Chechkina, C. D'Apice, U. De Maio, “Rate of convergence of eigenvalues to singularly perturbed Steklov-type problem for elasticity system”, Appl. Anal., 98:1-2 (2019), 32–44  |
→ |
Homogenization of spectral problems with singular perturbation of the Steklov condition A. G. Chechkina Izv. RAN. Ser. Mat., 81:1 (2017), 203–240
|
|
| 14. |
O. Balkanova, D. Frolenkov, “Bounds for a spectral exponential sum”, J. Lond. Math. Soc. (2), 99:2 (2019), 249–272  |
→ |
Asymptotic formulae for the second moments of $L$-series of holomorphic cusp forms on the critical line V. A. Bykovskii, D. A. Frolenkov Izv. RAN. Ser. Mat., 81:2 (2017), 5–34
|
|
| 15. |
A. Galt, A. Staroletov, “On splitting of the normalizer of a maximal torus in $E_6(q)$”, Algebra Colloq., 26:2 (2019), 329–350  |
→ |
On the splitting of the normalizer of a maximal torus in the exceptional linear algebraic groups A. A. Gal't Izv. RAN. Ser. Mat., 81:2 (2017), 35–52
|
|
| 16. |
S. Yu. Dobrokhotov, A. A. Tolchennikov, “Solution of the two-dimensional Dirac equation with a linear potential and a localized initial condition”, Russ. J. Math. Phys., 26:2 (2019), 139–151  |
→ |
New integral representations of the Maslov canonical operator in singular charts S. Yu. Dobrokhotov, V. E. Nazaikinskii, A. I. Shafarevich Izv. RAN. Ser. Mat., 81:2 (2017), 53–96
|
| 17. |
S. A. Sergeev, “Asimptoticheskie resheniya zadachi Koshi s lokalizovannymi nachalnymi
dannymi dlya raznostnoi skhemy, otvechayuschei odnomernomu volnovomu
uravneniyu”, Matem. zametki, 106:5 (2019), 744–760  |
→ |
New integral representations of the Maslov canonical operator in singular charts S. Yu. Dobrokhotov, V. E. Nazaikinskii, A. I. Shafarevich Izv. RAN. Ser. Mat., 81:2 (2017), 53–96
|
| 18. |
P. S. Petrov, S. A. Sergeev, A. A. Tolchennikov, “On the application of asymptotic formulae based on the modified maslov canonical operator to the modeling of acoustic pulses propagation in three-dimensional shallow-water waveguides”, Acoust. Phys., 65:6 (2019), 716–723  |
→ |
New integral representations of the Maslov canonical operator in singular charts S. Yu. Dobrokhotov, V. E. Nazaikinskii, A. I. Shafarevich Izv. RAN. Ser. Mat., 81:2 (2017), 53–96
|
|
| 19. |
V. G. Chirskii, “Product formula, global relations, and polyadic numbers”, Russ. J. Math. Phys., 26:3 (2019), 286–305  |
→ |
Arithmetic properties of polyadic series with periodic coefficients V. G. Chirskii Izv. RAN. Ser. Mat., 81:2 (2017), 215–232
|
| 20. |
V. Yu. Matveev, “Svoistva elementov pryamykh proizvedenii polei”, Chebyshevskii sb., 20:2 (2019), 383–390  |
→ |
Arithmetic properties of polyadic series with periodic coefficients V. G. Chirskii Izv. RAN. Ser. Mat., 81:2 (2017), 215–232
|
|
|
|
| Total publications: |
3263 |
| Scientific articles: |
3180 |
| Authors: |
1836 |
| Citations: |
39453 |
| Cited articles: |
2836 |
 |
Impact Factor Web of Science |
|
for 2025:
0.700 |
|
for 2024:
0.900 |
|
for 2023:
0.800 |
|
for 2022:
0.800 |
|
for 2021:
0.978 |
|
for 2020:
1.189 |
|
for 2019:
1.130 |
|
for 2018:
1.030 |
|
for 2017:
0.923 |
|
for 2016:
0.725 |
|
for 2015:
0.505 |
|
for 2014:
0.630 |
|
for 2013:
0.500 |
|
for 2012:
0.640 |
|
for 2011:
0.488 |
|
for 2010:
0.494 |
|
for 2009:
0.635 |
|
for 2008:
0.494 |
|
for 2007:
0.453 |
|
for 2006:
0.545 |
|
for 2005:
0.649 |
 |
Scopus Metrics |
|
2025 |
CiteScore |
1.200 |
|
2025 |
SNIP |
0.799 |
|
2025 |
SJR |
0.464 |
|
2024 |
CiteScore |
1.300 |
|
2024 |
SNIP |
0.986 |
|
2024 |
SJR |
0.575 |
|
2023 |
CiteScore |
1.300 |
|
2023 |
SNIP |
1.081 |
|
2023 |
SJR |
0.519 |
|
2022 |
SJR |
0.449 |
|
2021 |
SJR |
0.726 |
|
2020 |
SJR |
1.057 |
|
2019 |
SJR |
0.587 |
|
2018 |
CiteScore |
0.660 |
|
2018 |
SJR |
0.691 |
|
2017 |
CiteScore |
0.440 |
|
2017 |
SNIP |
0.711 |
|
2017 |
SJR |
0.420 |
|
2016 |
CiteScore |
0.330 |
|
2016 |
SNIP |
0.717 |
|
2016 |
SJR |
0.376 |
|
2015 |
CiteScore |
0.360 |
|
2015 |
SNIP |
0.537 |
|
2015 |
IPP |
0.309 |
|
2015 |
SJR |
0.362 |
|
2014 |
CiteScore |
0.310 |
|
2014 |
SNIP |
0.500 |
|
2014 |
IPP |
0.293 |
|
2014 |
SJR |
0.362 |
|
2013 |
SNIP |
0.715 |
|
2013 |
IPP |
0.264 |
|
2013 |
SJR |
0.362 |
|
2012 |
SNIP |
0.544 |
|
2012 |
IPP |
0.220 |
|
2012 |
SJR |
0.396 |
|