|
5-years impact-factor Math-Net.Ru of «Algebra i Analiz» journal, 2018
5-years impact-factor Math-Net.Ru of the journal in 2018 is calculated
as the number of citations in 2018 to the scientific papers published during
2013–2017.
The table below contains the list of citations in 2018 to the papers
published in 2013–2017. 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 |
5-years impact-factor Math-Net.Ru |
Scientific papers |
Citations |
Citated papers |
Journal Self-citations |
2018 |
0.846 |
247 |
209 |
100 |
6.2% |
|
|
N |
Citing pulication |
|
Cited paper |
|
1. |
E. Carlini, F. J. Silva, “On the discretization of some nonlinear Fokker–Planck–Kolmogorov equations and applications”, SIAM J. Numer. Anal., 56:4 (2018), 2148–2177  |
→ |
Nonlinear parabolic equations for measures O. A. Manita, S. V. Shaposhnikov Algebra i Analiz, 25:1 (2013), 64–93
|
2. |
Oxana A. Manita, Maxim S. Romanov, Stanislav V. Shaposhnikov, “Estimates of distances between solutions of Fokker–Planck–Kolmogorov equations with partially degenerate diffusion matrices”, Theory Stoch. Process., 23(39):2 (2018), 41–54  |
→ |
Nonlinear parabolic equations for measures O. A. Manita, S. V. Shaposhnikov Algebra i Analiz, 25:1 (2013), 64–93
|
3. |
Stanislav V. Shaposhnikov, Springer Proceedings in Mathematics & Statistics, 229, Stochastic Partial Differential Equations and Related Fields, 2018, 367  |
→ |
Nonlinear parabolic equations for measures O. A. Manita, S. V. Shaposhnikov Algebra i Analiz, 25:1 (2013), 64–93
|
|
4. |
N. Filonov, “Operator Maksvella v tsilindre s koeffitsientami, ne zavisyaschimi ot prodolnoi peremennoi”, Algebra i analiz, 30:3 (2018), 210–249  |
→ |
The Maxwell system in waveguides with several cylindrical ends B. A. Plamenevskiĭ, A. S. Poretskiĭ Algebra i Analiz, 25:1 (2013), 94–155
|
|
5. |
N. Filonov, “Operator Maksvella v tsilindre s koeffitsientami, ne zavisyaschimi ot prodolnoi peremennoi”, Algebra i analiz, 30:3 (2018), 210–249  |
→ |
Weyl asymptotics for the spectrum of the Maxwell operator in Lipschitz domains of arbitrary dimension N. Filonov Algebra i Analiz, 25:1 (2013), 170–215
|
|
6. |
O. P. Popova, I. M. Fedorova, S. I. Koteleva, T. A. Skirda, M. S. Blyakher, S. V. Bunin, “CLINICAL AND IMMUNOLOGICAL FEATURES OF THE COMBINED COURSE OF PERTUSSIS AND CHLAMIDYAL INFECTION IN CHILDREN”, Det. infekc., 17:3 (2018), 16  |
→ |
Schr\"odinger equations with time-dependent strong magnetic fields D. Aiba, K. Yajima Algebra i Analiz, 25:2 (2013), 37–62
|
|
7. |
D. Apushkinskaya, Free boundary problems. Regularity properties near the fixed boundary, Lect. Notes Math., 2218, Springer, Cham, 2018, xvii+146 pp.  |
→ |
Uniform estimates near the initial state for solutions of the two-phase parabolic problem D. E. Apushkinskaya, N. N. Uraltseva Algebra i Analiz, 25:2 (2013), 63–74
|
|
8. |
Iryna Egorova, Johanna Michor, Gerald Teschl, “Long-time asymptotics for the Toda shock problem: non-overlapping spectra”, Zhurn. matem. fiz., anal., geom., 14:4 (2018), 406–451  |
→ |
On asymptotic properties of polynomials orthogonal with respect to varying weights and related topics of spectral theory I. E. Egorova, L. A. Pastur Algebra i Analiz, 25:2 (2013), 101–124
|
|
9. |
A. Aleman, J. Viola, “On weak and strong solution operators for evolution equations coming from quadratic operators”, J. Spectr. Theory, 8:1 (2018), 33–121  |
→ |
Supersymmetric structures for second order differential operators F. Hérau, M. Hitrik, J. Sjöstrand Algebra i Analiz, 25:2 (2013), 125–154
|
|
10. |
A. A. Fedotov, “Monodromizatsiya i raznostnye uravneniya s meromorfnymi periodicheskimi koeffitsientami”, Funkts. analiz i ego pril., 52:1 (2018), 92–97  |
→ |
Monodromization method in the theory of almost-periodic equations A. A. Fedotov Algebra i Analiz, 25:2 (2013), 203–235
|
11. |
S. Jitomirskaya, W. Liu, “Universal hierarchical structure of quasiperiodic eigenfunctions”, Ann. Math., 187:3 (2018), 721–776  |
→ |
Monodromization method in the theory of almost-periodic equations A. A. Fedotov Algebra i Analiz, 25:2 (2013), 203–235
|
12. |
A. A. Fedotov, “Matritsa monodromii dlya uravneniya pochti-Mate s maloi konstantoi svyazi”, Funkts. analiz i ego pril., 52:4 (2018), 89–93  |
→ |
Monodromization method in the theory of almost-periodic equations A. A. Fedotov Algebra i Analiz, 25:2 (2013), 203–235
|
13. |
A. A. Fedotov, E. V. Schetka, “Kvaziklassicheskie asimptotiki spektra
dokriticheskogo operatora Kharpera”, Matem. zametki, 104:6 (2018), 948–952  |
→ |
Monodromization method in the theory of almost-periodic equations A. A. Fedotov Algebra i Analiz, 25:2 (2013), 203–235
|
14. |
A. Fedotov, F. Klopp, “Difference equations, uniform quasiclassical asymptotics and Airy functions”, 2018 Days on Diffraction (DD) (St. Petersburg, Russia), eds. O. Motygin, A. Kiselev, L. Goray, A. Kazakov, A. Kirpichnikova, M. Perel, IEEE, 2018, 98–101  |
→ |
Monodromization method in the theory of almost-periodic equations A. A. Fedotov Algebra i Analiz, 25:2 (2013), 203–235
|
15. |
A. Fedotov, E. Shchetka, “Monodromy matrices for Harper equation”, 2018 Days on Diffraction (DD) (St. Petersburg, Russia), eds. O. Motygin, A. Kiselev, L. Goray, A. Kazakov, A. Kirpichnikova, M. Perel, IEEE, 2018, 102–105  |
→ |
Monodromization method in the theory of almost-periodic equations A. A. Fedotov Algebra i Analiz, 25:2 (2013), 203–235
|
|
16. |
J. Rozendaal, M. Veraar, “Sharp growth rates for semigroups using resolvent bounds”, J. Evol. Equ., 18:4 (2018), 1721–1744  |
→ |
Sublinear dimension growth in the Kreiss Matrix Theorem N. Nikolski Algebra i Analiz, 25:3 (2013), 3–51
|
|
17. |
I. Vasilyev, “Local boundary smoothness of an analytic function and its modulus in several dimensions: an announcement”, Issledovaniya po lineinym operatoram i teorii funktsii. 46, Zap. nauchn. sem. POMI, 467, POMI, SPb., 2018, 30–33  |
→ |
Local smoothness of an analytic function compared to the smoothness of its modulus A. V. Vasin, S. V. Kislyakov, A. N. Medvedev Algebra i Analiz, 25:3 (2013), 52–85
|
|
18. |
A. G. Babenko, Yu. V. Kryakin, “O konstantakh v teoreme Dzheksona–Stechkina v sluchae priblizheniya algebraicheskimi mnogochlenami”, Garmonicheskii analiz, teoriya priblizhenii i teoriya chisel, Sbornik statei. K 60-letiyu so dnya rozhdeniya akademika Sergeya Vladimirovicha Konyagina, Trudy MIAN, 303, MAIK «Nauka/Interperiodika», M., 2018, 26–38  |
→ |
Estimates for functionals with a known finite set of moments in terms of high order moduli of continuity in the spaces of functions defined on the segment O. L. Vinogradov, V. V. Zhuk Algebra i Analiz, 25:3 (2013), 86–120
|
|
19. |
M. Lifshits, A. Nazarov, “$L_2$-small deviations for weighted stationary processes”, Mathematika, 64:2 (2018), 387–405  |
→ |
Comparison theorems for the small ball probabilities of the Green Gaussian processes in weighted $L_2$-norms A. I. Nazarov, R. S. Pusev Algebra i Analiz, 25:3 (2013), 131–146
|
20. |
D. N. Zaporozhets, I. A. Ibragimov, M. A. Lifshits, A. I. Nazarov, “K istorii Sankt-Peterburgskoi shkoly teorii veroyatnostei i matematicheskoi statistiki. II. Sluchainye protsessy i zavisimye velichiny”, Vestnik SPbGU. Matematika. Mekhanika. Astronomiya, 5 (63):3 (2018), 367–401  |
→ |
Comparison theorems for the small ball probabilities of the Green Gaussian processes in weighted $L_2$-norms A. I. Nazarov, R. S. Pusev Algebra i Analiz, 25:3 (2013), 131–146
|
|
|
Total publications: |
1949 |
Scientific articles: |
1846 |
Authors: |
1408 |
Citations: |
14287 |
Cited articles: |
1469 |
 |
Impact Factor Web of Science |
|
for 2023:
0.700 |
|
for 2022:
0.800 |
|
for 2021:
0.934 |
|
for 2020:
0.804 |
|
for 2019:
0.800 |
|
for 2018:
1.000 |
|
for 2017:
0.604 |
|
for 2016:
0.438 |
|
for 2015:
0.485 |
|
for 2014:
0.641 |
|
for 2013:
0.561 |
|
for 2012:
0.460 |
|
for 2011:
0.287 |
|
for 2010:
0.347 |
 |
Scopus Metrics |
|
2024 |
SJR |
0.293 |
|
2023 |
CiteScore |
1.000 |
|
2023 |
SNIP |
0.425 |
|
2023 |
SJR |
0.350 |
|
2022 |
SJR |
0.431 |
|
2021 |
SJR |
0.325 |
|
2020 |
SJR |
0.328 |
|
2019 |
SJR |
0.458 |
|
2018 |
CiteScore |
0.580 |
|
2018 |
SJR |
0.632 |
|
2017 |
CiteScore |
0.340 |
|
2017 |
SNIP |
0.519 |
|
2017 |
SJR |
0.335 |
|
2016 |
CiteScore |
0.230 |
|
2016 |
SNIP |
0.398 |
|
2016 |
SJR |
0.215 |
|
2015 |
CiteScore |
0.280 |
|
2015 |
SNIP |
0.722 |
|
2015 |
IPP |
0.245 |
|
2015 |
SJR |
0.366 |
|
2014 |
CiteScore |
0.330 |
|
2014 |
SNIP |
0.690 |
|
2014 |
IPP |
0.336 |
|
2014 |
SJR |
0.317 |
|
2013 |
SNIP |
0.591 |
|
2013 |
IPP |
0.306 |
|
2013 |
SJR |
0.277 |
|
2012 |
SNIP |
0.728 |
|
2012 |
IPP |
0.260 |
|
2012 |
SJR |
0.205 |
|