|
5-years impact-factor Math-Net.Ru of «Algebra i Analiz» journal, 2015
5-years impact-factor Math-Net.Ru of the journal in 2015 is calculated
as the number of citations in 2015 to the scientific papers published during
2010–2014.
The table below contains the list of citations in 2015 to the papers
published in 2010–2014. 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 |
2015 |
0.723 |
242 |
175 |
100 |
10.3% |
|
|
N |
Citing pulication |
|
Cited paper |
|
1. |
Izabella Łaba, Abel Symposia, 9, Operator-Related Function Theory and Time-Frequency Analysis, 2015, 117  |
→ |
The power law for the Buffon needle probability of the four-corner Cantor set F. Nazarov, Y. Peres, A. Volberg Algebra i Analiz, 22:1 (2010), 82–97
|
|
2. |
A. V. Pechkurov, “Odin primer v teorii bisektorialnykh operatorov”, Matem. zametki, 97:2 (2015), 249–254  |
→ |
To the theory of infinitely differentiable semigroups of operators M. S. Bichegkuev Algebra i Analiz, 22:2 (2010), 1–13
|
|
3. |
Hume D., “Direct Embeddings of Relatively Hyperbolic Groups With Optimal l(P) Compression Exponent”, J. Reine Angew. Math., 703 (2015), 147–172  |
→ |
Linearly controlled asymptotic dimension of the fundamental group of a graph-manifold A. Smirnov Algebra i Analiz, 22:2 (2010), 185–203
|
|
4. |
Aref'eva I.Ya., Golubtsova A.A., “Shock Waves in Lifshitz-Like Spacetimes”, J. High Energy Phys., 2015, no. 4, 011  |
→ |
Several aspects of applying distributions to analysis of gravitational shock waves in general relativity I. Ya. Aref'eva, A. A. Bagrov, L. V. Joukovskaya Algebra i Analiz, 22:3 (2010), 3–15
|
|
5. |
M. V. Babich, “On birational Darboux coordinates on coadjoint orbits of classical complex Lie groups”, Teoriya predstavlenii, dinamicheskie sistemy, kombinatornye metody. XXIV, Zap. nauchn. sem. POMI, 432, POMI, SPb., 2015, 36–57  |
→ |
On rational symplectic parametrization of the coadjoint orbit of $\mathrm{GL}(N)$. Diagonalizable case M. V. Babich, S. E. Derkachov Algebra i Analiz, 22:3 (2010), 16–31
|
6. |
M. V. Babich, “Diagrammy Yunga i stratifikatsiya prostranstva kvadratnykh kompleksnykh matrits”, Voprosy kvantovoi teorii polya i statisticheskoi fiziki. 23, Zap. nauchn. sem. POMI, 433, POMI, SPb., 2015, 41–64  |
→ |
On rational symplectic parametrization of the coadjoint orbit of $\mathrm{GL}(N)$. Diagonalizable case M. V. Babich, S. E. Derkachov Algebra i Analiz, 22:3 (2010), 16–31
|
|
7. |
N. M. Bogolyubov, K. L. Malyshev, “Integriruemye modeli i kombinatorika”, UMN, 70:5(425) (2015), 3–74  |
→ |
The correlation functions of the $XXZ$ Heisenberg chain in the case of zero or infinite anisotropy, and random walks of vicious walkers N. M. Bogoliubov, K. Malyshev Algebra i Analiz, 22:3 (2010), 32–59
|
8. |
N. M. Bogoliubov, C. Malyshev, “Combinatorial aspects of correlation functions of the $XXZ$ Heisenberg chain in limiting cases”, Teoriya predstavlenii, dinamicheskie sistemy, kombinatornye metody. XXVI, Zap. nauchn. sem. POMI, 437, POMI, SPb., 2015, 15–34  |
→ |
The correlation functions of the $XXZ$ Heisenberg chain in the case of zero or infinite anisotropy, and random walks of vicious walkers N. M. Bogoliubov, K. Malyshev Algebra i Analiz, 22:3 (2010), 32–59
|
|
9. |
Bytsko A., “Tensor Space Representations of Temperley-Lieb Algebra Via Orthogonal Projections of Rank R >= 1”, J. Math. Phys., 56:8 (2015), 083502  |
→ |
Non-Hermitian spin chains with inhomogeneous coupling A. G. Bytsko Algebra i Analiz, 22:3 (2010), 80–106
|
10. |
Li C., Song Z., “Generation of Bell, W, and Greenberger-Horne-Zeilinger States Via Exceptional Points in Non-Hermitian Quantum Spin Systems”, Phys. Rev. A, 91:6 (2015), 062104  |
→ |
Non-Hermitian spin chains with inhomogeneous coupling A. G. Bytsko Algebra i Analiz, 22:3 (2010), 80–106
|
|
11. |
van Diejen J.F., Emsiz E., “Integrable Boundary Interactions For Ruijsenaars' Difference Toda Chain”, Commun. Math. Phys., 337:1 (2015), 171–189  |
→ |
Quantum Toda chains intertwined A. Gerasimov, D. Lebedev, S. Oblezin Algebra i Analiz, 22:3 (2010), 107–141
|
|
12. |
Zhao D., Li Ya., “Fusion Procedure For Degenerate Cyclotomic Hecke Algebras”, Algebr. Represent. Theory, 18:2 (2015), 449–461  |
→ |
Fusion procedure for the Brauer algebra A. P. Isaev, A. I. Molev Algebra i Analiz, 22:3 (2010), 142–154
|
|
13. |
Pusztai B.G., “on the Classical R-Matrix Structure of the Rational Bcn Ruijsenaars-Schneider-Van Diejen System”, Nucl. Phys. B, 900 (2015), 115–146  |
→ |
Gaudin Hamiltonians generate the Bethe algebra of a~tensor power of the vector representation of~$\frak{gl}_N$ E. Mukhin, V. Tarasov, A. Varchenko Algebra i Analiz, 22:3 (2010), 177–190
|
14. |
Tsuboi Z., Zabrodin A., Zotov A., “Supersymmetric Quantum Spin Chains and Classical Integrable Systems”, J. High Energy Phys., 2015, no. 5, 086  |
→ |
Gaudin Hamiltonians generate the Bethe algebra of a~tensor power of the vector representation of~$\frak{gl}_N$ E. Mukhin, V. Tarasov, A. Varchenko Algebra i Analiz, 22:3 (2010), 177–190
|
15. |
A. Zabrodin, Springer Proceedings in Physics, 163, Nonlinear Mathematical Physics and Natural Hazards, 2015, 29  |
→ |
Gaudin Hamiltonians generate the Bethe algebra of a~tensor power of the vector representation of~$\frak{gl}_N$ E. Mukhin, V. Tarasov, A. Varchenko Algebra i Analiz, 22:3 (2010), 177–190
|
|
16. |
S. B. Kolonitskii, “Mnozhestvennost kontsentriruyuschikhsya na krivykh polozhitelnykh reshenii zadachi Dirikhle dlya uravneniya s $p$-laplasianom”, Funkts. analiz i ego pril., 49:2 (2015), 88–92  |
→ |
Multiplicity of solutions of the Dirichlet problem for an equation with the $p$-Laplacian in a three-dimensional spherical layer S. B. Kolonitskiĭ Algebra i Analiz, 22:3 (2010), 206–221
|
17. |
A. I. Enin, A. I. Nazarov, “Multiplicity of Solutions to the Quasilinear Neumann Problem in the 3-Dimensional Case”, J Math Sci, 207:2 (2015), 206  |
→ |
Multiplicity of solutions of the Dirichlet problem for an equation with the $p$-Laplacian in a three-dimensional spherical layer S. B. Kolonitskiĭ Algebra i Analiz, 22:3 (2010), 206–221
|
|
18. |
Panov A.N., “Invariants of the Coadjoint Action on the Basic Varieties of the Unitriangular Group”, Transform. Groups, 20:1 (2015), 229–246  |
→ |
Invariants of coadjoint representations of regular factors A. N. Panov Algebra i Analiz, 22:3 (2010), 222–247
|
|
19. |
Kussainova L., Ospanova A., “Interpolation Theorems For Weighted Sobolev Spaces”, World Congress on Engineering, Wce 2015, Vol i, Lecture Notes in Engineering and Computer Science, eds. Ao S., Gelman L., Hukins D., Hunter A., Korsunsky A., Int Assoc Engineers-Iaeng, 2015, 25–28  |
→ |
The quasinormed Neumann–Schatten ideals and embedding theorems for the generalized Lions–Peetre spaces of means V. I. Ovchinnikov Algebra i Analiz, 22:4 (2010), 214–231
|
|
20. |
A. Yu. Trynin, “O neobkhodimykh i dostatochnykh usloviyakh skhodimosti sink-approksimatsii”, Algebra i analiz, 27:5 (2015), 170–194  |
→ |
On divergence of sinc-approximations everywhere on $(0,\pi)$ A. Yu. Trynin Algebra i Analiz, 22:4 (2010), 232–256
|
|
|
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 |
|