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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
A. Golovizin, D. Mishin, D. Provorchenko, D. Tregubov, N. Kolachevsky, “Synchronous comparison of two thulium optical clocks”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:9 (2024), 645–650 ; JETP Letters, 119:9 (2024), 659–664 |
2. |
D. I. Provorchenko, D. O. Tregubov, A. A. Golovizin, N. N. Kolachevsky, “Laser cooling of thulium atoms to ground vibrational state in an optical lattice”, UFN, 194:11 (2024), 1185–1195 |
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2022 |
3. |
D. A. Mishin, D. I. Provorchenko, D. O. Tregubov, A. A. Golovizin, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Effect of optical lattice field on characteristics of a clock transition in thulium atoms”, Kvantovaya Elektronika, 52:6 (2022), 505–512 [Quantum Electron., 52:6 (2022), 505–512 ] |
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2021 |
4. |
K. S. Kudeyarov, A. A. Golovizin, A. S. Borisenko, N. O. Zhadnov, I. V. Zalivako, D. S. Kryuchkov, E. O. Chiglintsev, G. A. Vishnyakova, K. Yu. Khabarova, N. N. Kolachevsky, “Comparison of three ultrastable lasers with a femtosecond frequency comb”, Pis'ma v Zh. Èksper. Teoret. Fiz., 114:5 (2021), 291–297 ; JETP Letters, 114:5 (2021), 243–249 |
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5. |
D. I. Provorchenko, D. O. Tregubov, D. A. Mishin, A. A. Golovizin, E. S. Fedorova, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Investigation of the transition at a wavelength of 506 nm, intended for deep cooling of thulium atoms”, Kvantovaya Elektronika, 51:6 (2021), 479–483 [Quantum Electron., 51:6 (2021), 479–483 ] |
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2020 |
6. |
I. V. Zalivako, I. A. Semerikov, A. S. Borisenko, M. D. Aksenov, P. A. Vishnyakov, P. L. Sidorov, N. V. Semenin, A. A. Golovizin, K. Yu. Khabarova, N. N. Kolachevsky, “Compact ultrastable laser system for spectroscopy of <sup>2</sup>S<sub>1/2</sub> → <sup>2</sup>D<sub>3/2</sub> quadrupole transition in <sup>171</sup>Yb<sup>+</sup> ion”, Kvantovaya Elektronika, 50:9 (2020), 850–854 [Quantum Electron., 50:9 (2020), 850–854 ] |
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7. |
D. O. Tregubov, A. A. Golovizin, E. S. Fedorova, D. A. Mishin, D. I. Provorchenko, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Detection of the clock transition in thulium atoms by using repump laser radiation”, Kvantovaya Elektronika, 50:6 (2020), 566–570 [Quantum Electron., 50:6 (2020), 566–570 ] |
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8. |
E. S. Fedorova, D. O. Tregubov, A. A. Golovizin, D. A. Mishin, D. I. Provorchenko, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Rabi spectroscopy of the clock transition in thulium atoms in a one-dimensional optical lattice”, Kvantovaya Elektronika, 50:3 (2020), 220–224 [Quantum Electron., 50:3 (2020), 220–224 ] |
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2019 |
9. |
D. O. Tregubov, A. A. Golovizin, E. S. Fedorova, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Magic wavelengths near 800 nm for precision spectroscopy of an inner-shell transition in thulium atoms”, Kvantovaya Elektronika, 49:11 (2019), 1028–1031 [Quantum Electron., 49:11 (2019), 1028–1031 ] |
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10. |
E. S. Fedorova, D. O. Tregubov, A. A. Golovizin, G. A. Vishnyakova, D. A. Mishin, D. I. Provorchenko, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Optical pumping of ultracold thulium atoms to a lower level of the clock transition and study of their depolarisation”, Kvantovaya Elektronika, 49:5 (2019), 418–423 [Quantum Electron., 49:5 (2019), 418–423 ] |
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2018 |
11. |
E. S. Kalganova, A. A. Golovizin, D. O. Shevnin, D. O. Tregubov, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Trapping of thulium atoms in a cavity-enhanced optical lattice near a magic wavelength of 814.5 nm”, Kvantovaya Elektronika, 48:5 (2018), 415–418 [Quantum Electron., 48:5 (2018), 415–418 ] |
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2017 |
12. |
A. A. Golovizin, E. S. Kalganova, D. D. Sukachev, G. A. Vishnyakova, D. O. Tregubov, K. Yu. Khabarova, V. N. Sorokin, N. N. Kolachevsky, “Methods for determining the polarisability of the fine structure levels in the ground state of the thulium atom”, Kvantovaya Elektronika, 47:5 (2017), 479–483 [Quantum Electron., 47:5 (2017), 479–483 ] |
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2016 |
13. |
G. A. Vishnyakova, A. A. Golovizin, E. S. Kalganova, V. N. Sorokin, D. D. Sukachev, D. O. Tregubov, K. Yu. Khabarova, N. N. Kolachevsky, “Ultracold lanthanides: from optical clock to a quantum simulator”, UFN, 186:2 (2016), 176–182 ; Phys. Usp., 59:2 (2016), 168–173 |
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2015 |
14. |
A. A. Golovizin, E. S. Kalganova, D. D. Sukachev, G. A. Vishnyakova, I. A. Semerikov, V. V. Soshenko, D. O. Tregubov, A. V. Akimov, N. N. Kolachevsky, K. Yu. Khabarova, V. N. Sorokin, “Detection of the clock transition ($1.14\ \mu\mathrm m$) in ultra-cold thulium atoms”, Kvantovaya Elektronika, 45:5 (2015), 482–485 [Quantum Electron., 45:5 (2015), 482–485 ] |
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2013 |
15. |
D. D. Sukachev, E. S. Kalganova (Fedorova), A. V. Sokolov, A. V. Savchenkov, G. A. Vishnyakova, A. V. Akimov, A. A. Golovizin, N. N. Kolachevsky, V. N. Sorokin, “Collimation of a thulium atomic beam by two-dimensional optical molasses”, Kvantovaya Elektronika, 43:4 (2013), 374–378 [Quantum Electron., 43:4 (2013), 374–378 ] |
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2012 |
16. |
S. A. Snigirev, A. A. Golovizin, G. A. Vishnyakova, A. V. Akimov, V. N. Sorokin, N. N. Kolachevsky, “Coherent excitation of the 5D<sub>5/2</sub> level of ultra-cold rubidium atoms with short laser pulses”, Kvantovaya Elektronika, 42:8 (2012), 714–720 [Quantum Electron., 42:8 (2012), 714–720 ] |
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