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Publications in Math-Net.Ru |
Citations |
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2025 |
| 1. |
M. V. Petrenko, A. S. Pazgalev, A. K. Vershovskii, “Anomalously low relaxation rate of the second-order magnetic moment component (alignment) in cesium”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 51:3 (2025), 6–9 |
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2024 |
| 2. |
F. S. Sviridov, A. K. Vershovskii, “Analytical solution for the populations of the energy levels of alkali metals under optical pumping and mixing of excited state sublevels”, Optics and Spectroscopy, 132:12 (2024), 1254–1260 |
| 3. |
F. S. Sviridov, A. S. Pazgalev, A. K. Vershovskii, “Physical basis of the optical non-destructive method of testing of the gas composition in the cells used in quantum sensors”, Optics and Spectroscopy, 132:12 (2024), 1210–1213 |
| 4. |
A. K. Vershovskii, A. S. Pazgalev, M. V. Petrenko, “Balanced detection of linear dichroism signals in cesium”, Optics and Spectroscopy, 132:8 (2024), 869–876 |
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2023 |
| 5. |
A. K. Vershovskii, M. V. Petrenko, “Frequency transfer of an optically detected magnetic resonance and observation of the Hanle effect in a nonzero magnetic field”, Optics and Spectroscopy, 131:1 (2023), 5–10 |
| 6. |
A. K. Vershovskii, M. V. Petrenko, “Optical magnetometric sensor for magnetoencephalographic complexes”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 49:6 (2023), 43–46 |
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2021 |
| 7. |
A. K. Vershovskii, M. V. Petrenko, “Methods of parametric resonance excitation in the scheme of an optical magnetometric sensor”, Zhurnal Tekhnicheskoi Fiziki, 91:5 (2021), 840–845 ; Tech. Phys., 66:7 (2021), 821–826 |
4
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| 8. |
A. K. Vershovskii, M. V. Petrenko, “Three-level approximation in calculating the parameters of optically detected magnetic resonance under conditions of strong laser pumping”, Optics and Spectroscopy, 129:4 (2021), 462–466 ; Optics and Spectroscopy, 129:5 (2021), 592–596 |
4
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| 9. |
A. K. Vershovskii, S. P. Dmitriev, M. V. Petrenko, “Spin-exchange broadening of the magnetic $M_X$ resonance in cesium”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:8 (2021), 51–54 ; Tech. Phys. Lett., 47:6 (2021), 421–424 |
4
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2020 |
| 10. |
A. K. Vershovskii, A. K. Dmitriev, “A weak magnetic field sensor based on nitrogen-vacancy color centers in a diamond crystal”, Zhurnal Tekhnicheskoi Fiziki, 90:8 (2020), 1353–1358 ; Tech. Phys., 65:8 (2020), 1301–1306 |
9
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| 11. |
A. K. Vershovskii, S. P. Dmitriev, G. G. Kozlov, A. S. Pazgalev, M. V. Petrenko, “Projection spin noise in optical quantum sensors based on thermal atoms”, Zhurnal Tekhnicheskoi Fiziki, 90:8 (2020), 1243–1253 ; Tech. Phys., 65:8 (2020), 1193–1203 |
17
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| 12. |
A. K. Vershovskii, A. S. Pazgalev, M. V. Petrenko, “All-optical magnetometric sensor for magnetoencephalography and ultralow field tomography”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 46:17 (2020), 43–46 ; Tech. Phys. Lett., 46:9 (2020), 877–880 |
10
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2019 |
| 13. |
S. P. Dmitriev, A. S. Pazgalev, M. V. Petrenko, A. K. Vershovskii, “All-optical quantum sensor of the magnetic field deflection”, Optics and Spectroscopy, 127:4 (2019), 691 ; Optics and Spectroscopy, 127:4 (2019), 742–745 |
1
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| 14. |
A. K. Vershovskii, S. P. Dmitriev, A. S. Pazgalev, M. V. Petrenko, “The effect of the polarization characteristics of probe light on the signal of optically detected magnetic resonance in magnetometric and gyroscopic quantum sensors”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:20 (2019), 3–6 ; Tech. Phys. Lett., 45:10 (2019), 1012–1015 |
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2018 |
| 15. |
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 |
17
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| 16. |
A. K. Vershovskii, A. S. Pazgalev, V. I. Petrov, “The nature of the effect of precession-frequency mismatch between $^{129}$Xe and $^{131}$Xe nuclei under spin-exchange pumping by alkali-metal atoms”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:7 (2018), 88–94 ; Tech. Phys. Lett., 44:4 (2018), 313–315 |
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2016 |
| 17. |
Yu. V. Rozhdestvenskii, A. K. Vershovskii, E. A. Ageichik, V. S. Zholnerov, “Formation of a beam of cold atoms by laser frequency tuning”, Kvantovaya Elektronika, 46:10 (2016), 941–946 [Quantum Electron., 46:10 (2016), 941–946 ] |
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2015 |
| 18. |
A. K. Vershovskii, A. K. Dmitriev, “Combined excitation of an optically detected magnetic resonance in nitrogen-vacancy centers in diamond for precision measurement of the components of a magnetic field vector”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:21 (2015), 7–13 ; Tech. Phys. Lett., 41:11 (2015), 1026–1029 |
3
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| 19. |
A. K. Vershovskii, A. K. Dmitriev, “Micro-scale three-component quantum magnetometer based on nitrogen-vacancy color centers in diamond crystal”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:8 (2015), 78–85 ; Tech. Phys. Lett., 41:8 (2015), 393–396 |
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2013 |
| 20. |
A. K. Vershovskii, S. P. Dmitriev, A. S. Pazgalev, “Optically pumped quantum magnetometer with combined advantages of $M_X$ and $M_Z$ devices”, Zhurnal Tekhnicheskoi Fiziki, 83:10 (2013), 90–97 ; Tech. Phys., 58:10 (2013), 1481–1488 |
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2011 |
| 21. |
A. K. Vershovskii, “Project of laser-pumped quantum $M_X$ magnetometer”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:3 (2011), 93–101 ; Tech. Phys. Lett., 37:2 (2011), 140–143 |
13
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| 22. |
A. K. Vershovskii, A. S. Pazgalev, “Optically pumped quantum magnetometer employing two components of magnetic moment precession signal”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:1 (2011), 48–55 ; Tech. Phys. Lett., 37:1 (2011), 23–26 |
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2009 |
| 23. |
E. B. Aleksandrov, A. K. Vershovskii, “Modern radio-optical methods in quantum magnetometry”, UFN, 179:6 (2009), 605–637 ; Phys. Usp., 52:6 (2009), 573–601 |
126
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2008 |
| 24. |
A. K. Vershovskii, A. S. Pazgalev, “Optimization of the Q factor of the magnetic $M_x$ resonance under optical pump conditions”, Zhurnal Tekhnicheskoi Fiziki, 78:5 (2008), 116–124 ; Tech. Phys., 53:5 (2008), 646–654 |
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2006 |
| 25. |
A. K. Vershovskii, A. S. Pazgalev, “Optically pumped quantum $M_x$ magnetometers: Digital measurement of the $M_x$ resonance frequency in a rapidly varying field”, Zhurnal Tekhnicheskoi Fiziki, 76:7 (2006), 108–112 ; Tech. Phys., 51:7 (2006), 924–928 |
10
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| 26. |
E. B. Aleksandrov, A. K. Vershovskii, A. S. Pazgalev, “Magnetometer based on a pair of symmetric transitions in the $^{87}$Rb hyperfine structure”, Zhurnal Tekhnicheskoi Fiziki, 76:7 (2006), 103–107 ; Tech. Phys., 51:7 (2006), 919–923 |
13
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| 27. |
A. K. Vershovskii, M. V. Balabas, A. È. Ivanov, V. N. Kulyasov, A. S. Pazgalev, E. B. Aleksandrov, “Fast three-component magnetometer-variometer based on a cesium sensor”, Zhurnal Tekhnicheskoi Fiziki, 76:1 (2006), 115–120 ; Tech. Phys., 51:1 (2006), 112–117 |
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1990 |
| 28. |
A. K. Vershovskii, A. S. Pazgalev, N. N. Yakobson, “BOUNDING OF THE QUALITY FACTOR OF QUANTUM FREQUENCY-DISCRIMINATOR
THROUGH FAST FLUCTUATIONS OF RADIOFREQUENCY FIELD”, Zhurnal Tekhnicheskoi Fiziki, 60:9 (1990), 58–63 |
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1989 |
| 29. |
E. B. Alexandrov, A. K. Vershovskii, N. N. Yakobson, “MINIMIZATION OF LIGHT SHIFTS OF RUBIDIUM DISCRIMINATORS”, Zhurnal Tekhnicheskoi Fiziki, 59:1 (1989), 118–124 |
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1988 |
| 30. |
E. B. Alexandrov, A. K. Vershovskii, N. N. Yakobson, “REGIME OF A SUPERWEAK OPTICAL-PUMPING OF THE RUBIDIUM
FREQUENCY-DISCRIMINATOR”, Zhurnal Tekhnicheskoi Fiziki, 58:6 (1988), 1116–1121 |
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1986 |
| 31. |
E. B. Alexandrov, N. N. Yakobson, A. K. Vershovskii, “OPTIMIZATION OF O-O RESONANCE QUALITY PARAMETERS IN RUBIDIUM VAPORS
DURING OPTICAL-PUMPING”, Zhurnal Tekhnicheskoi Fiziki, 56:5 (1986), 970–973 |
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2022 |
| 32. |
M. V. Petrenko, A. S. Pazgalev, A. K. Vershovskii, “Quantum optical magnetic field sensor for neurodiagnostic systems of a new generation”, Kvantovaya Elektronika, 52:2 (2022), 119–126 [Quantum Electron., 52:2 (2022), 119–126 ] |
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2021 |
| 33. |
A. M. Sergeev, Yu. Yu. Balega, I. A. Shcherbakov, E. B. Aleksandrov, V. M. Andreev, A. L. Aseev, A. M. Bykov, I. V. Grekhov, V. V. Gusarov, A. V. Dvurechenskii, A. V. Ivanchik, E. L. Ivchenko, N. N. Kazansky, A. A. Kaplyanskii, V. V. Kveder, N. N. Kolachevsky, S. G. Konnikov, P. S. Kop'ev, Z. F. Krasil'nik, A. G. Litvak, S. V. Medvedev, Yu. V. Natochin, V. N. Parmon, E. E. Son, R. A. Suris, V. B. Timofeev, V. V. Ustinov, V. M. Ustinov, S. V. Ivanov, A. N. Aleshin, M. V. Arkhipov, P. N. Brunkov, A. I. Veinger, A. K. Vershovskii, E. A. Volkova, S. A. Gurevich, V. K. Gusev, V. A. Dergachev, A. G. Deryagin, O. V. Dudnik, V. V. Zhdanov, N. L. Istomina, A. M. Kalashnikova, E. S. Kornilova, E. V. Kustova, A.A. Lebedev, E.V. Lipatova, A. V. Nashchekin, R. V. Parfen'ev, M. P. Petrov, G. V. Skornyakov, E. M. Smirnov, G. S. Sokolovskii, A. V. Solomonov, M. G. Sushkova, E. I. Terukov, E. A. Chaban, O. L. Chagunava, A. P. Shergin, E. V. Shestopalova, M. L. Shmatov, A. A. Shmidt, V. L. Shubin, “Андрей Георгиевич Забродский, к 75-летию со дня рождения”, Zhurnal Tekhnicheskoi Fiziki, 91:6 (2021), 893–894 |
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