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Publications in Math-Net.Ru |
Citations |
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2025 |
| 1. |
S. I. Kudryashov, S. N. Shelygina, V. O. Kompanets, S. V. Chekalin, I. M. Efremov, A. V. Stolyarov, E. R. Tolordava, “Микроскопический механизм денатурации белков и нуклеиновых кислот бактерий P. aeruginosa при резонансном поглощении фемтосекундных лазерных импульсов с длиной волны $6$ мкм”, Pis'ma v Zh. Èksper. Teoret. Fiz., 122:3 (2025), 184–190 |
| 2. |
V. A. Terashkevich, E. A. Pazyuk, A. V. Stolyarov, “The feasible photoinduced growth of polycyclic aromatic hydrocarbons from cosmic benzene ice”, Mendeleev Commun., 35:3 (2025), 324–326 |
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2024 |
| 3. |
A. M. Ryzhkov, D. P. Usov, I. M. Savelyev, Yu. S. Kozhedub, I. I. Tupitsyn, V. M. Shabaev, A. V. Stolyarov, “Relativistic, quantum-electrodynamic and electron-correlation corrections to the interatomic potential of the CN radical”, Optics and Spectroscopy, 132:12 (2024), 1248–1253 |
| 4. |
D. P. Usov, N. K. Dulaev, A. V. Stolyarov, Yu. S. Kozhedub, I. I. Tupitsyn, V. M. Shabaev, “Relativistic calculations of potential energies of low-lying electronic states and transition dipole moments of the OH radical”, Optics and Spectroscopy, 132:11 (2024), 1165–1174 |
| 5. |
E. A. Bormotova, A. S. Likharev, K. E. Kopylov, V. V. Krotov, S. V. Kozlov, A. V. Stolyarov, “Ab initio calculations of the electronic structure of the doublet any quartet states of the rubidium trimer”, Optics and Spectroscopy, 132:7 (2024), 704–715 |
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2023 |
| 6. |
E. A. Bormotova, A. S. Likharev, A. V. Stolyarov, “Ab initio calculations of the electronic structure of the doublet and quartet states of the rubidium trimer”, Optics and Spectroscopy, 131:9 (2023), 1163–1172 |
| 7. |
S. V. Kozlov, A. V. Stolyarov, E. A. Pazyuk, “Influence of non-adiabatic interactions on the Lande $g$-factors of the $X^2\Sigma^+\sim A^2\Pi\sim B^2\Sigma^+$ complex of the CN radical”, Optics and Spectroscopy, 131:8 (2023), 1039–1046 |
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2020 |
| 8. |
M. S. Murga, D. S. Wiebe, A. I. Vasyunin, V. N. Varakin, A. V. Stolyarov, “Experimental and theoretical studies of photoinduced reactions in the solid phase of the interstellar medium”, Usp. Khim., 89:4 (2020), 430–448 ; Russian Chem. Reviews, 89:4 (2020), 430–448 |
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2018 |
| 9. |
E. A. Konovalova, Yu. A. Demidov, A. V. Stolyarov, “The effect of relativistic interactions on the spectral characteristics of the ground state of carbon monoxide”, Optics and Spectroscopy, 125:4 (2018), 451–456 ; Optics and Spectroscopy, 125:4 (2018), 470–475 |
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| 10. |
S. V. Kozlov, E. A. Pazyuk, A. V. Stolyarov, “A reduced method of coupled vibrational channels: analysis of regular perturbations in the $c^3\Sigma_{\Omega}^{+}$-state of a KRb molecule”, Optics and Spectroscopy, 125:4 (2018), 445–450 ; Optics and Spectroscopy, 125:4 (2018), 464–469 |
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| 11. |
A. V. Zaitsevskii, L. V. Skripnikov, A. V. Kudrin, A. V. Oleinichenko, E. Eliav, A. V. Stolyarov, “Electronic transition dipole moments in relativistic coupled-cluster theory: the finite-field method”, Optics and Spectroscopy, 124:4 (2018), 435–440 ; Optics and Spectroscopy, 124:4 (2018), 451–456 |
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2015 |
| 12. |
E. A. Pazyuk, A. V. Zaitsevskii, A. V. Stolyarov, M. Tamanis, R. Ferber, “Laser synthesis of ultracold alkali metal dimers: optimization and control”, Usp. Khim., 84:10 (2015), 1001–1020 ; Russian Chem. Reviews, 84:10 (2015), 1001–1020 |
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2006 |
| 13. |
V. V. Meshkov, A. V. Stolyarov, A. V. Ivanchik, D. A. Varshalovich, “Ab initio nonadiabatic calculation of the sensitivity coefficients for the <i>X</i><sup>1</sup>Σ
<sub>g</sub><sup>+</sup> → <i>B</i><sup>1</sup>Σ
<sub>u</sub><sup>+</sup>
; <i>C</i><sup>1</sup>Π<sub>u</sub> lines of H<sub>2</sub> to the proton-to-electron mass ratio”, Pis'ma v Zh. Èksper. Teoret. Fiz., 83:8 (2006), 363–366 ; JETP Letters, 83:8 (2006), 303–307 |
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