|
|
Publications in Math-Net.Ru |
Citations |
|
2025 |
1. |
A. Yu. Maior, V. V. Lisitsa, Yu. S. Tolstonogova, A. V. Borovskiy, S. S. Golik, “Dynamics of emission lines under laser plasma generation in water aerosol”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 51:2 (2025), 18–21 |
|
2023 |
2. |
I. M. Efimov, N. A. Vanyushkin, S. S. Golik, A. H. Gevorgyan, “Sensor with enhanced performance based on photonic crystal with a defect layer”, Computer Optics, 47:4 (2023), 572–579 |
6
|
3. |
S. S. Golik, A. V. Borovskii, A. Yu. Maior, A. S. Ankushev, V. V. Lisitsa, M. Yu. Babii, “The effect of the duration of laser pulses on the spectral-temporal characteristics of laser plasma in femtosecond laser-induced breakdown spectroscopy of human hair”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 49:8 (2023), 29–31 |
|
2021 |
4. |
A. H. Gevorgyan, S. S. Golik, “Features of magneto-optics of dichroic cholesteric liquid crystals”, Computer Optics, 45:6 (2021), 839–847 |
1
|
5. |
D. Yu. Proschenko, S. S. Golik, A. Yu. Maior, A. A. Il'in, A. V. Borovskiy, O. A. Bukin, “Development of a laser-induced breakdown spectroscopy method for the issues of geological exploration and ecological monitoring of aquatic environments in real time”, University proceedings. Volga region. Physical and mathematical sciences, 2021, no. 1, 112–119 |
6. |
A. H. Gevorgyan, S. S. Golik, “On the magnetooptics of cholesteric liquid crystals”, Optics and Spectroscopy, 129:10 (2021), 1261–1269 ; Optics and Spectroscopy, 130:3 (2022), 163–172 |
1
|
|
2020 |
7. |
Yu. N. Kulchin, S. S. Voznesenskii, E. L. Gamayunov, S. S. Golik, A. A. Il'in, O. T. Kamenev, A. I. Nikitin, A. N. Pavlov, A. Yu. Popik, R. V. Romashko, E. P. Subbotin, “Photonic methods and technologies for monitoring the ocean and atmosphere”, Kvantovaya Elektronika, 50:5 (2020), 475–488 [Quantum Electron., 50:5 (2020), 475–488 ] |
11
|
|
2019 |
8. |
S. S. Golik, V. V. Lisitsa, A. Yu. Maior, A. A. Il'in, Yu. S. Tolstonogova, A. V. Borovskii, N. N. Golik, D. Yu. Proschenko, M. Yu. Babii, “Spectral-time characteristics of sodium emission lines at filamentation of femtosecond duration laser pulses in atmospheric aerosol”, Meždunar. nauč.-issled. žurn., 2019, no. 11(89), 6–10 |
|
2018 |
9. |
D. Yu. Proschenko, A. Yu. Mayor, S. S. Golik, “Investigation of laser-induced fluorescence spectra of different grades of petroleum products dissolved in sea water with double-frequency excitation by pulses of femtosecond length”, Meždunar. nauč.-issled. žurn., 2018, no. 9(75), 42–46 |
10. |
S. S. Golik, V. V. Lisitsa, A. Yu. Mayor, Yu. S. Tolstonogova, M. Yu. Babii, I. G. Nagornyi, “Development of atmosphere lidar sounding methods with femtosecond impulses”, Meždunar. nauč.-issled. žurn., 2018, no. 9(75), 12–16 |
11. |
A. H. Gevorgyan, S. S. Golik, T. A. Gevorgyan, “The influence of the direction of external magnetic field on the band structure of magneto-photonic crystals”, Optics and Spectroscopy, 124:3 (2018), 315–323 ; Optics and Spectroscopy, 124:3 (2018), 310–318 |
2
|
12. |
A. A. Il'in, S. S. Golik, K. A. Shmirko, A. Yu. Mayor, D. Yu. Proschenko, Yu. N. Kulchin, “Broadening and shift of emission lines in a plasma of filaments generated by a tightly focused femtosecond laser pulse in air”, Kvantovaya Elektronika, 48:2 (2018), 149–156 [Quantum Electron., 48:2 (2018), 149–156 ] |
15
|
|
2017 |
13. |
A. A. Il'in, S. S. Golik, M. Yu. Babii, Yu. S. Biryukova, V. V. Lisitsa, D. V. Burov, Yu. N. Kulchin, “Spectral and temporal characteristics of Ba I emission in femtosecond laser-induced breakdown on the surfaces of aqueous solutions”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 43:18 (2017), 90–96 ; Tech. Phys. Lett., 43:9 (2017), 860–862 |
2
|
|
2016 |
14. |
Yu. E. Geints, S. S. Golik, A. A. Zemlyanov, A. M. Kabanov, A. V. Petrov, “Microstructure of the multiple-filamentation zone formed by femtosecond laser radiation in a solid dielectric”, Kvantovaya Elektronika, 46:2 (2016), 133–141 [Quantum Electron., 46:2 (2016), 133–141 ] |
19
|
|
2015 |
15. |
S. S. Golik, A. A. Il'in, M. Yu. Babii, Yu. S. Biryukova, T. M. Agapova, A. Yu. Maior, O. A. Bukin, Yu. N. Kulchin, “The influence of laser pulse repetition rate on the intensity of spectral lines in femtosecond laser-induced breakdown spectroscopy of a liquid”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 41:21 (2015), 45–51 ; Tech. Phys. Lett., 41:11 (2015), 1044–1046 |
18
|
16. |
Yu. N. Kulchin, A. Yu. Mayor, D. Yu. Proschenko, A. Yu. Zhizhchenko, S. S. Golik, M. Yu. Babiy, A. G. Mirochnik, “Modification of a new polymer photorecording material based on PMMA doped with 2,2-difluoro-4-(9-antracyl)-6-methyl-1,3,2-dioxaborine by ultrashort pulses”, Kvantovaya Elektronika, 45:5 (2015), 477–481 [Quantum Electron., 45:5 (2015), 477–481 ] |
11
|
|
2014 |
17. |
O. A. Bukin, M. Yu. Babii, S. S. Golik, A. A. Il'in, A. M. Kabanov, A. V. Kolesnikov, Yu. N. Kulchin, V. V. Lisitsa, G. G. Matvienko, V. K. Oshlakov, K. A. Shmirko, “Lidar sensing of the atmosphere with gigawatt laser pulses of femtosecond duration”, Kvantovaya Elektronika, 44:6 (2014), 563–569 [Quantum Electron., 44:6 (2014), 563–569 ] |
18
|
18. |
Yu. È. Geints, S. S. Golik, A. A. Zemlyanov, A. M. Kabanov, G. G. Matvienko, “Influence of the laser beam size on the length of a filament formed by high-power femtosecond laser radiation in air”, Kvantovaya Elektronika, 44:5 (2014), 489–497 [Quantum Electron., 44:5 (2014), 489–497 ] |
9
|
|
2013 |
19. |
Yu. N. Kulchin, S. S. Golik, D. Yu. Proschenko, A. A. Chekhlenok, I. V. Postnova, A. Yu. Maior, Yu. A. Shchipunov, “Supercontinuum generation and filamentation of ultrashort laser pulses in hybrid silicate nanocomposite materials on the basis of polysaccharides and hyperbranched polyglycidols”, Kvantovaya Elektronika, 43:4 (2013), 370–373 [Quantum Electron., 43:4 (2013), 370–373 ] |
9
|
|
|
|
2014 |
20. |
Yu. N. Kulchin, A. Yu. Maior, D. Yu. Proschenko, A. A. Chekhlenok, I. V. Postnova, S. S. Golik, O. A. Bukin, Yu. A. Shchipunov, “Threshold energies for filamentation and spectral characteristics of supercontinuum generation in THEOS-based nanocomposite organosilicon media”, Kvantovaya Elektronika, 44:8 (2014), 793–797 [Quantum Electron., 44:8 (2014), 793–797 ] |
4
|
|
Organisations |
|
|
|
|