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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
G. V. Voloshin, K. A. Barantsev, A. N. Litvinov, “Line shape and light shift of coherent population trapping resonance under Ramsey interrogation in 'hot' atoms in an optically dense medium”, Kvantovaya Elektronika, 52:2 (2022), 108–115 [Quantum Electron., 52:2 (2022), 108–115 ] |
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2021 |
2. |
A. N. Litvinov, I. M. Sokolov, “Effect of the motion of atoms and collisions with the antirelaxation coating of the walls of gas cells on the shape and shift of the coherent population trapping resonance”, Pis'ma v Zh. Èksper. Teoret. Fiz., 113:12 (2021), 791–796 ; JETP Letters, 113:12 (2021), 763–768 |
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3. |
S. V. Bodjokin, K. A. Barantsev, A. N. Litvinov, “Method of translation transfer for estimation of stability of a nonstationary quantum frequency standard”, Zhurnal Tekhnicheskoi Fiziki, 91:1 (2021), 32–38 ; Tech. Phys., 66:1 (2021), 28–33 |
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2020 |
4. |
G. V. Voloshin, K. A. Barantsev, A. N. Litvinov, “Effect of collisions on the shape of the coherent population trapping resonance detected by the Ramsey method”, Kvantovaya Elektronika, 50:11 (2020), 1023–1028 [Quantum Electron., 50:11 (2020), 1023–1028 ] |
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5. |
K. A. Barantsev, T. Zanon-Willette, A. N. Litvinov, “Generalised hyper-Ramsey spectroscopy of two-level atoms in an optically dense medium”, Kvantovaya Elektronika, 50:10 (2020), 934–938 [Quantum Electron., 50:10 (2020), 934–938 ] |
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2019 |
6. |
K. A. Barantsev, A. N. Litvinov, “Analysis of the light shift in the hyper-Ramsey scheme of two-level atom interrogation in an optically dense medium”, Kvantovaya Elektronika, 49:9 (2019), 863–867 [Quantum Electron., 49:9 (2019), 863–867 ] |
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7. |
E. N. Popov, K. A. Barantsev, A. N. Litvinov, “Theoretical simulation of a signal for a scheme of an atomic spin gyroscope with optical detection”, Kvantovaya Elektronika, 49:2 (2019), 169–177 [Quantum Electron., 49:2 (2019), 169–177 ] |
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2018 |
8. |
E. N. Popov, V. A. Bobrikova, S. P. Voskoboinikov, K. A. Barantsev, S. M. Ustinov, A. N. Litvinov, A. K. Vershovskii, S. P. Dmitriev, V. A. Kartoshkin, A. S. Pazgalev, M. V. Petrenko, “Features of the formation of the spin polarization of an alkali metal at the resolution of hyperfine sublevels in the $^2S_{1/2}$ state”, Pis'ma v Zh. Èksper. Teoret. Fiz., 108:8 (2018), 543–548 ; JETP Letters, 108:8 (2018), 513–518 |
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9. |
V. A. Bobrikova, E. N. Popov, K. A. Barantsev, S. P. Voskoboinikov, A. N. Litvinov, “Spin polarization of an ensemble of alkali atoms with zero average magnetization”, Pis'ma v Zh. Èksper. Teoret. Fiz., 107:11 (2018), 723–727 ; JETP Letters, 107:11 (2018), 690–694 |
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10. |
K. A. Barantsev, E. N. Popov, A. N. Litvinov, “Line shape of coherent population trapping resonance in the Λ-scheme under Ramsey-type interrogation in an optically dense medium”, Kvantovaya Elektronika, 48:7 (2018), 615–620 [Quantum Electron., 48:7 (2018), 615–620 ] |
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2017 |
11. |
S. V. Bodjokin, S. V. Zharko, N. V. Larionov, A. N. Litvinov, I. M. Sokolov, “Wavelet correlations of nonstationary signals”, Zhurnal Tekhnicheskoi Fiziki, 87:6 (2017), 822–830 ; Tech. Phys., 62:6 (2017), 837–845 |
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12. |
K. A. Barantsev, E. N. Popov, A. N. Litvinov, “Selective detection of polarisation components of a coherent population trapping signal in hot alkali metal atoms”, Kvantovaya Elektronika, 47:9 (2017), 812–817 [Quantum Electron., 47:9 (2017), 812–817 ] |
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2014 |
13. |
K. A. Barantsev, A. N. Litvinov, “Effect of temperature on the shape of spatial quasi-periodic oscillations of the refractive index of alkali atoms in an optically dense medium with a closed excitation contour of Δ type”, Kvantovaya Elektronika, 44:10 (2014), 944–949 [Quantum Electron., 44:10 (2014), 944–949 ] |
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2012 |
14. |
K. A. Barantsev, A. N. Litvinov, G. A. Kazakov, Yu. V. Rozhdestvenskii, “Anomalous dispersion properties of an atomic medium with a closed excitation contour”, Kvantovaya Elektronika, 42:7 (2012), 612–615 [Quantum Electron., 42:7 (2012), 612–615 ] |
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15. |
G. A. Kazakov, A. N. Litvinov, B. G. Matisov, “Narrowing of the coherent population trapping resonance under zone pumping in cells with different characteristics of the wall coating”, Kvantovaya Elektronika, 42:2 (2012), 185–188 [Quantum Electron., 42:2 (2012), 185–188 ] |
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