
The Department of Laser Physics and Spectroscopy trains specialists and conducts research and applied development in modern and in-demand areas of physics: Laser Physics, Nonlinear Optics, Laser Spectroscopy, Coherent Optics and Holography, and the application of lasers and spectroscopic methods in research, industry, and medicine. Instruments developed in the Department are used in research and education at Belarusian and international universities, and are applied to protect securities and documents from counterfeiting, as well as in analytical and biomedical practice. Graduates successfully work in research institutes specializing in physics and medicine, and at high-tech enterprises producing modern laser-optical and spectroscopic equipment, as well as optical and holographic elements.
Creation Date
1953
Specialization
Laser Physics and Spectroscopy, Applied Spectroscopy; Nanophotonics
Department Staff, 2020

Number of Lecturers
13, including 3 professors, 7 associate professors
Directions of Training
University-Qualified Specialists in:
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7-07-0533-01 Fundamental Physics
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6-05-0533-02 Applied Physics
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1-31 04 01-01 "Physics (research activities)"
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1-31 04 01-02 "Physics (production activities)"
Masters in:
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7-06-0113-04 Physics and Mathematics Education
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7-06-0533-02 Applied Physics
Highly Qualified Researchers in:
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04.05 "Optics"
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04.21 "Laser Physics"
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11.07 "Optical and Optoelectronic Instruments and Systems"
Main Places of Employment for Graduates
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B.I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus
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Scientific and Practical Materials Research Centre of the National Academy of Sciences of Belarus (Optics, Optoelectronics and Laser Technology)
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A.N. Sevchenko Institute of Applied Physical Problems of the Belarusian State University
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Institute for Nuclear Problems of the Belarusian State University (INP BSU)
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BelOMO Holding (Belarusian Optical and Mechanical Association)
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UE "STC "LEMT" BelOMO"
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JSC Peleng
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JSC Planar
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JV LOTIS TII
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JSC Holography Industry
Main International Partners
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ITMO University (Saint Petersburg National Research University of Information Technologies, Mechanics and Optics), St. Petersburg, RF
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Tomsk State University of Control Systems and Radioelectronics (TUSUR), Tomsk, RF
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The Australian National University (ANU), Canberra, Australia
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Friedrich Schiller University Jena (FSU), Jena, Germany
Branch of the Department
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B.I. Stepanov Institute of Physics of the National Academy of Sciences of Belarus
Educational Process
The Department's educational process is supported by the necessary spectral and laser equipment, including modern spectrophotometers, as well as various models of gas, liquid, solid-state, and semiconductor lasers, as well as measuring equipment with high spectral and temporal resolution. New laboratory workshops have been introduced in laser physics, nonlinear optics, laser atomic emission spectroscopy, molecular spectroscopy and luminescence, fiber optics, holography, optical information processing, and nanophotonics. Students have the opportunity to learn how to work with nano-, pico-, and femtosecond laser pulses, explore methods for tuning laser wavelengths from the ultraviolet to the infrared spectrum, master methods for recording holograms and holographic interferometry, implement optical manipulation of microobjects using laser tweezers, and much more.
The Department regularly trains international undergraduate, master's students and postgraduates. Over the past five years, the Department has enrolled 12 master's students from the United Arab Emirates and 20 master's students from the People's Republic of China. The organization and content of the educational process are constantly being improved: new lecture courses and specialized practical exercises are being introduced, and laboratory equipment is being updated, including, to a large extent, based on original developments. The high level of specialist training is ensured by the active participation of lecturers of the Department of Laser Physics and Spectroscopy in projects within scientific and scientific-technical programs, in which the Department's undergraduate, master's students, and postgraduates are regularly involved.
Scientific Activities
Since its establishment, the Department has focused on developing scientific research, seeing this as the key to enhancing the professional skills of lecturers and students. Throughout its history, the Department has participated in research programs, individual research projects, and experimental design projects, as well as grants from the Belarusian Republican Foundation for Basic Research and international projects. The Research Laboratory for Nonlinear Optics and Spectroscopy and the Student Research Laboratory "Nonlinear Dynamics of Physical Systems" are successfully operating at the Department.
Undergraduate, graduate, and postgraduate students of the Department publish over 50 scientific papers annually, either independently or as co-authors. Student papers from the Department are annually recognized as winners of the National Student Research Paper Competition.
One of the strengths of the Department of Laser Physics and Spectroscopy is the practical application of research results. Over the past 15 years, the department has developed the number of unique devices for scientific research and the educational process: the Laser Video-MicroSpectrometric Complex (VMSC) for analyzing the characteristics of spatially complex objects, the Modular Scientific and Educational Laser Complex with tunable spectral generation characteristics, the Educational and Research Modular Complex based on the Diode-Pumped Laser, the Scientific and Educational Laser-Optical Complex for training specialists in the field of Micro- and Nanophotonics, the Scientific and Educational Laser Laboratory Complex for Optical Manipulation of Microobjects, the Laser Complex for Studying the Processes of obtaining and controlling the composition of multicomponent functional materials using Laser Atomic Emission Multichannel Spectrometry, the Scientific and Educational Laboratory Complex for Nonlinear Optics of Femtosecond Pulses, the Modular Nonlinear Optical Laser Complex for studying Spectral Frequency Tuning based on parametric processes.
Additional information about the Department you can find from the presentation (in Russian).
KEY PUBLICATIONS
2025:
Scientific Articles:
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Nonvolatile Control of Optical and Electronic Responses in 2D MoS2 via Ferroelectric ScAlN Thin Films / Zha Zhengxian, Hou Xinyi, Wang Hu, Li Haoran, Kozadaev Konstantin V., Li Yong-Jiang, Dai Jianxun, Han Xue, Liu Kun, Huang Huolin, Sun Changsen, Gao Junfeng, Tolstik Aleksei, Pan Lujun, Li Dawei // ACS Applied Materials & Interfaces. – 2025. – Vol. 17. – P. 26920-26930. (Q1)
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Observation of Intrinsic and LED Light-Enhanced Memristor Performance in In-Plane Ferroelectric NbOI2 / Zheng Hao, Gaolei Zhao, Juhe Liu, Yunhao Tong, Haoran Li, Jichang Zhang, Jiabin Liu, Fanyi Kong, Konstantin V. Kozadaev, Yongjiang Li, Xue Han, Hong Li, Huolin Huang, Changsen Sun, Alexei Tolstik, Andrey Novitsky, Lujun Pan, Dawei Li // ACS Nano. – 2025. – Vol. 19. – P. 27654-27664. (Q1)
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Phase Topology Stability of an Optical Vortex via an Electrically Controlled Twist-Planar Oriented Liquid Crystal Fresnel Lens / E. Melnikova, K. Pantsialeyeva, D. Gorbach, A. Tolstik, S. Slussarenko Jr., A. Karabchevsky // Advanced Optical Materials. – 2025. – Vol. 19. – e02277. (Q1)
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Magnetic Nanocomposites Fe3O4/FeOOH as a Promising Basis for Advanced Oxidation Processes (Fenton Reaction) / Y.D. Mitskevich, M.M. Degtyarik, A.A. Kharchanka, M.V. Bushinsky, Yu.A. Fedotova, E.S. Voropay// Journal of Applied Spectroscopy. – 2025. – Vol. 92. – Р. 770-783. (Q4)
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Optical and Electrical Properties of Sb2(SxSe1–x)3 Films for Solar Cells / M.S. Tivanov, T.M. Razykov, K.M. Kuchkarov, L.S. Lyashenko, E.S. Voropay, Sh. B. Utamurodova, D.Z. Isakov, M.A. Makhmudov, A.N. Olimov, S.A. Muzafarova, D.S. Bayko // Journal of Applied Spectroscopy. – 2025. – Vol. 91. – P. 1249-1255. (Q4)
2024:
Scientific Articles:
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Ectrically controlled liquid crystal twist-planar fresnel lens / E.A. Mel'nikova, E.P. Panteleeva, D.V. Gorbach, A.L. Tolstik, I.I. Rushnova, and O.S. Kabanova // Journal of Applied Spectroscopy. – 2024. – Vol. 91, No. 5. – P. 1072-1077. (Q4)
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Dynamics of light-induced reorientation in planar cell filled with the azo-dye doped nematic liquid crystal / S. Slussarenko, E. Melnikova, A Tolstik // Nonlinear Phenomena in Complex Systems. – 2024. – Vol. 27, No. 4. – P. 335-340. (Q4)
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Mechanism of photodamage of microbial cells sensitized by indotricarbocyanine dyе / A.A. Tabolich, A.I. Tretyakova, L.G. Plavskaya, T.S. Ananich, R.K. Nahorny, V.Y. Plavskii, L.S. Lyashenko, E.S. Voropay, A.P. Lugovski // Journal of Applied Spectroscopy. – 2024. – Vol. 91, No. 3. – Р. 593-600. (Q4)
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Transfer of electronic excitation energy between thioflavin t and its styryl derivatives incorporated into amyloid fibrils / E.I. Pligin, A.A. Lugovski, E.S. Voropay, A.A. Maskevich // Journal of Applied Spectroscopy. – 2024. – Vol. 91, No. 3. – Р. 503-510. (Q4)
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Photophysical Properties of Indotricarbocyanine Dyes Complexed with Lipid-Transfer Protein Ns-LTP1/ D.S. Tarasov, M.P. Samtsov, Yu.I. Oshchepkova, A.P. Lugovski, E.S. Voropay // Journal of Applied Spectroscopy. – 2024. – Vol. 91, No. 2. – Р. 349-356. (Q4)
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Dynamics of light-induced reorientation in planar cell filled with the azo-dye doped nematic liquid crystal / S. Slussarenko, E. Melnikova, A Tolstik // Nonlinear Phenomena in Complex Systems. – 2024. –Vol. 27, No. 4. – P. 335-340. (Q4)
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Tunable liquid crystal twisted-planar Fresnel lens for vortex topology determination / E. Melnikova, Y. Pantsialeyeva, D. Gorbach, A. Tolstik, A. Karabchevsky // Laser Photonics Reviews. – 2024. – P. 2401006. (Q1)
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Starukhin, A.S. Dependence of fluorescence quantum yields on the effects reabsorption for porphyrins and phthalocyanines / A.S. Starukhin, V.V. Kouhar, V.S. Shershan, T.A. Pavich // Bulletin of the Russian Academy of Sciences: Physics. – 2024. – Vol. 88, No. 6. – P. 891-895. (Q4)
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Exceptional points in PT -symmetric layered structures with an anisotropic defect / M. Ramanovich, A. Novitsky, V. Bobrovs, A.S. Shalin, D.V. Novitsky // Phys. Rev. B. – 2024. – Vol. 110. – 195423. (Q1)
2023:
ARTICLES IN JOURNALS 2023
Published in the Republic of Belarus
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Tolstik, A.L. Light Beam Transformation and Material Diagnostics by Dynamic Holography Methods/A.L.Tolstik, E.V.Ivakin, I.G.Dadenkov.// Journal of Applied Spectroscopy. – 2023. –V. 90, № 2. – P. 407–413. Scopus https://doi.org/10.1007/s10812-023-01547-1
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Melnikova, A. Achromatic Switchable Liquid-Crystal Twist-q-Plate/ E.A. Melnikova, A.L. Tolstik, D.V. Gorbach, V.Yu. Stanevich, I.N. Kukhta, D.S. Chepeleva, An.A. Murauski & Al.A. Muravsky//Journal of Applied Spectroscopy. – 2023. –V. 90, № 2. – P. 427–435. Scopus. https://doi.org/10.1007/s10812-023-01550-6
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Ivakin, E.V. Testing of heat transfer in absorbing thin film on substrate using the dynamic grating method / V. Ivakin, A.L. Tolstik// Journal of the Belarusian State University. Physics. – 2023. – №3– P. 4 – 9. https://elib.bsu.by/handle/123456789/304048
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Tolstik, A.L. Dynamic gratings for contactless material diagnostics /A.L. Tolstik, E.V. Ivakin, I.G. Dadenkov// Nonlinear Phenomena in Complex Systems. – 2023. –Vol. 26, No. 3. – P. 273–283. Scopus https://doi.org/10.5281/zenodo.10034399
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Voropay, E. S. Synthesis of Precursors for the Production of Nanoceramics of the CuAlO2 Type Under the Influence of Double Laser Pulses on AD1 and M2 Alloys in Air/ E.S. Voropay, N.A. Alekseenko, M.N. Kovalenko, L.V. Markova, A.P. Zazhogin. //Journal of Applied Spectroscopy. – 2023. – V.90, №5. – P.1-11. https://doi.org/10.1007/s10812-023-01543-5 (совместно с кафедрой ФО и ПИ)
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Samtsov M. P. Singlet Oxygen Generation by an Indotricarbocyanine Dye with Bulky Substituents/ Samtsov M. P. , Tarasov D. S.Voropay E.S.// Journal of Applied Spectroscopy. − 2023. − V.90. − №5.− P. 1029−1036. https://link.springer.com/article/10.1007/s10812-023-01628-1
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Pligin, E.I. Luminescence Spectral Properties of New Benzothiazole Polymethine Dye/ E.I. Pligin, A.V. Lavysh, A.A. Lugovskii, E.S. Voropay, É.E. Kopishev, A.A. Maskevich //Journal of Applied Spectroscopy. − 2023. − V.89. − №6.− P. 1021−1028. https://doi.org/10.1007/s10812-023-01461-6
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V. Ivakin. Application of the thermal diffusivity standard for the heat transfer parameter control in absorbing materials // Devices and Methods of Measurements. – 2023. V. 14, No. 3. – P. 173–178. https://doi.org/10.21122/2220-9506-2023-14-3-173-178
Internationally published
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M. Nastas, M.S. Iovu, A.M. Prisacar, G.M. Triduh, V.D. Prilepov, A.L. Tolstik, I.V. Stashkevich. Influence of the corona discharge on the formation of the diffractive holographic gratings in the As40S60−xSex films // Technical Physics. – 2023. – V. 68, No. 5. – P. 651–655. https://doi.org/10.21883/TP.2023.05.56072.285-22
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Ermalitsky, F. A. Time Characteristics of FEU-175 and FEU-186 Single-Electron Photomultipliers with Jitter of 0.4 ns/ F. A. Ermalitsky, K. F. Ermalitskayа, V. N. Lukyanov, A. N. Vyaznikov, R. V. Kirpichenko, G. A. Mamaeva, A. E. Radko, M. P. Samtsov, and O. A. Filipova // Instruments and Experimental Techniques – 2023. − Vol. 66, No. 2. − Р. 330–337. google https://link.springer.com/article/10.1134/S0020441223010128
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Belko, Nikita pH-Sensitive fluorescent sensor for Fe(III) and Cu(II) ions based on rhodamine B acylhydrazone: Sensing mechanism and bioimaging in living cells/ Nikita Belko, Hanna Maltanava, Anatol Lugovski, Rute A.S. Ferreira, Sandra F. H. Correia, Polina Shabunya, Sviatlana Fatykhava, Anastasiya Tabolich, Tatsiana Kulahava, Anastasiya Bahdanava, Marli Ferreira, Joa˜o Tedim, Sergey Poznyak, Michael Samtsov// Microchemical Journal.– 2023. – V. 191.– P. 108744.1–108744.11. https://doi.org/10.1016/j.microc.2023.108744
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Belko, N. Electrooxidation of rhodamine B hydrazide / N. Belko, H. Maltanava, A. Lugovski, S. Fatykhava, P. Shabunya, A. Tabolich, M. Samtsov, S. Poznyak // New J. Chem. – 2023. – Vol. 47, №. 32. – P. 15318–15324. https://pubs.rsc.org/en/content/articlelanding/2023/nj/d3nj02914j
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Belko, N. Indotricarbocyanine dyes relevant for photodynamic therapy and their radicals: Substituent effects studied by optical and electrochemical methods / N. Belko, H. Maltanava, A. Lugovski, M. Shundalau, Y. Osika, A. Smaliakou, S. Fatykhava, P. Shabunya, P. Lamberti, M. Samtsov, S. Poznyak // Dyes Pigm. – 2023. – Vol. 216. – P. 111344.1–111344.9. https://www.x-mol.net/paper/article/1651365672559325184
2022:
Scientific Articles:
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Switchable Diffraction Gratings Based on the Periodic Binary Alignment of a Nematic Liquid Crystal / K. G. Kamiak, O. S. Kabanova, I. I. Rushnova, E. A. Melnikova, A. L. Tolstik // Bulletin of the Russian Academy of Sciences: Physics. – 2021. – Vol. 85. – P. 1496-1500.
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Polarization Properties of the Electrically Controlled Twist-Planar Liquid Crystal Diffraction Structure / Melnikova Elena, Stashkevich Ihar, Rushnova Irina, Tolstik Alexei, Timofeev Sergei // Nonlinear Phenomena in Complex Systems. – 2022. – Vol. 25. – P. 229-244.
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Spectroelectrochemical and ESR investigation of free radicals derived from indotricarbocyanine dyes for photodynamic therapy / Maltanava Hanna, Belko Nikita, Lugovski Anatol, Brezhneva Nadzeya, Bondarenko Evgeny, Chulkin Pavel, Gusakov Grigory, Vileishikova Natalia, Samtsov Michael, Poznyak Sergey // Dyes and Pigments. – 2022. – Vol. 205. – 110599.
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Photophysical Properties of Indotricarbocyanine Dyes During Complexation with Serum Albumin / Tarasov D.S., Samtsov M.P., Khludeyev I.I., Maliushkova E.V., Semak I.V. // Journal of Applied Spectroscopy. – 2022. – Vol. 89. – P. 821-828.
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Spatial rogue waves in the actively Q-switched Nd:YAG laser under low Kerr nonlinearity / Navitskaya Roza, Stashkevich Ihar, Derevyanko Stanislav, Karabchevsky Alina // Optics Express. – 2022. – Vol. 30. – P. 37076-37084.
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Liquid-crystal q-plates with a phase core to generation vortex beams with controllable number of singularities / Melnikova E., Gorbach D., Slussarenko S., Sr., Muravsky A., Tolstik A. // Optics Communications. – 2022. – Vol. 522. – 128661.
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Investigation of Heat Transfer of Bulk and Thin-Film PbInTe Samples by the Method of Dynamic Gratings / Ivakin E.V., Tolstik A.L., Gorbach D.V., Stankevich A.A. // Journal of Engineering Physics and Thermophysics. – 2022. – Vol. 95. – P. 1026-1030.
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Spatial modulation spectroscopy of semiconductors using dynamic gratings / Tolstik Alexei L., Dadenkov Ivan G., Stankevich Alexander A. // Journal of Optical Technology (A Translation of Opticheskii Zhurnal). – 2022. – Vol. 89. – P. 250-254.
2021:
Scientific Articles:
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Switchable Diffraction Gratings Based on the Periodic Binary Alignment of a Nematic Liquid Crystal / Kamiak K.G., Kabanova O.S., Rushnova I.I., Melnikova E.A., Tolstik A.L. // Bulletin of the Russian Academy of Sciences: Physics. – 2021. – Vol. 85. – P. 1496-1500.
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Comparative analysis of the elemental composition of two groups of barbarian coins: Struck imitations and cast copies of roman imperial Denarii | [Analiza comparativă a componenţei elementare a două grupuri de producţie monetară barbară: Imitaţii bătute şi copii turnate ale denarilor romani imperiali] / Sidarovich V.M., Ermalitskaia Ks.F. // Stratum Plus. – 2021. – Vol. 2021. – P. 271-282.
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Formation of Oxidized Aluminum Nanopowders by Exposing Aluminum to a Series of Double Laser Pulses in Air / Bazzal, K., Alekseenko, N.A., Voropay, E.S., Kovalenko, M.N., Trinh, N.H., Zazhogin, A.P. // Journal of Applied Spectroscopy. – 2021. – Vol. 88. – P. 85-91.
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Formation of Oxidized Aluminum Nanopowders by Exposing Aluminum to a Series of Double Laser Pulses in Air / Bazzal, K., Alekseenko, N.A., Voropay, E.S., Kovalenko, M.N., Trinh, N.H., Zazhogin, A.P. // Journal of Applied Spectroscopy. – 2021. – Vol. 88. – P. 85-91.Конец формы
2020:
Scientific Articles:
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Navitskaya, R. I. Сavity dumping by the second harmonic generationin the q-switched Nd:YAG laser / R. I. Navitskaya, I. V. Stashkevich , E. S. Voropay // Journal of the Belarusian State University. Physics − 2020; − №1 − Р. 28 – 33 (журнал из перечня ВАК, РИНЦ) https://elib.bsu.by/handle/123456789/251599
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Rushnova, I.I. Fringe field-tunable LC refractive index interface for in-plane beam steering applications/ I.I. Rushnova, E.A. Melnikova, O.S. Kabanova, A.L. Tolstik, and A.A.Muravsky // Appl. Opt. − 2020. − Vol.59. − P.10695 −10699. (Scopus, РИНЦ, IF=1,96)
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Nastas, A. M. Effect of Corona Discharge on the Optical Properties of Thin-Film Cu–As2Se3 Structures/ A. M. Nastas, M. S. Iovu & A. L. Tolstik // Optics and Spectroscopy. 2020. Vol. 128, No. 2. P. 231–235. DOI: 10.1134/S0030400X20020174. (Web of Science, Scopus, IF=0,732) https://elib.bsu.by/handle/123456789/250892
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Dadenkov, I.G. Photoinduced Absorption and Pulsed Recording of Dynamic Holograms in Bismuth Silicate Crystals/ I.G. Dadenkov, A.L. Tolstik, Yu.I. Miksyuk, and K.A. Saechnikov // Optics and Spectroscopy. − 2020. − Vol. 128, No. 9. − P. 1401 – 1406. DOI: 10.1134/S0030400X20090052. (Web of Science, Scopus, IF=0,732) https://elib.bsu.by/handle/123456789/250891
Tutorials:
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Tolstik, А. Photonics / A. Tolstik, I. Agishev, D. Gorbach, V. Myshkovets, A. Maksimenka, G. Baevich, A. Melnikova, A. Lyalikov, A. Fedotov, J. Peuteman, M. Tivanov, N. Strekal, G. Vasilyuk, I. Semchenko, S. Khakhomov. − Riga Technical University. Riga. 2019. − 535 p.
2018:
Scientific Articles:
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I.I. Rushnova, O.S. Kabanova, E.A. Melnikova, A.L. Tolstik. Integrated-optical nematic liquid crystal switches: designing and operation features // Nonlinear Phenomena in Complex Systems – 2018. – V.21, №3. – P. 206-219. (РИНЦ, IF=0,28).
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V.I. Gerаsimenko , I.V. Stаshkevitch . The matrix effect on generation of quasi-three-level continuous wave neodymium laser under inhomogeneous pumping // Журнал Белорусского государственного университета. Физика. 2018, №2, с.11-16. (журнал из перечня ВАК).
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S.А.Nazarov, D.V.Gorbach, Е.А.Melnikova, S.N.Kurilkina and А.L.Tolstik. Spin-orbital conversion of Bessel light beams by liquid crystal elements // KnE Energy & Physics / VII International Conference on Photonics and Information Optics (PhIO) – 2018. – V.2018. – P.241–248.
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I.I. Rushnova, E.A. Melnikova, A.L. Tolstik, A.A. Muravsky. Electrically switchable photonic liquid crystal devices for routing of a polarized light wave // Optics Communications. – 2018. – Vol. 413. – P. 179-183. (IF=1,887)
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S.A. Nazarov, D.V. Gorbach, E.A. Mel’nikova, S.N. Kurilkina, and A.L. Tolstik. Spin-orbit transformation of Bessel light beams by electrically controlled liquid-crystal elements // Journal of Optical Technology – 2018. – V.85, №4. – С.189–192. (РИНЦ, IF=0,392)/
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S.D. Gogoleva, E.V. Kalganova, A.A. Maskevich, Lugovski A.А, V.A. Kuzmitsky, Mausumi Goswami, O.V. Buganov, S.A. Tikhomirov, V.I. Stsiapura / Neutral derivatives of Thioflavin T do not exhibit viscosity-dependent fluorescence // Journal of Photochemistry and Photobiology A: Chemistry .— 2018.— v.358.— p. 76―91. (Scopus, IF=2,891)
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Anna I. Sulatskaya, Maksim I. Sulatsky, Olga I. Povarova, Natalia P. Rodina, Irina M. Kuznetsova, Alexander A. Lugovskii, Evgeniy S. Voropay, Andrei V. Lavysh, Alexander A. Maskevich, Konstantin K. Turoverov / Trans-2-[4-(dimethylamino)styryl]-3-ethyl-1,3-benzothiazoliumperchlorate T - new fluorescent dye for testing of amyloid fibrils and study of their structure // Dyes and Pigments. — 2018.— v.157.— p. 385–395. (Scopus, IF=0,3473).
2017:
Scientific Articles:
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Precision Measurements of Raman Scattering for Synthetic Diamond Single Crystals / G. А. Gusakov, N. V. Belko, М. P. Samtsov, Е. S. Voropay, L. S. Lyashenko // Журнал прикладной спектроскопии. – 2016. – Т. 83, № 6-16. – С. 376-377. (Scopus, Web Science, IF=0.572).
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Morphology and Optical Properties of Self-Assembled Nanostructures of a Novel Indotricarbocyanine Dye / N. V. Belko, M. P. Samtsov, G. A. Gusakov, E. S. Voropay, L. S. Lyashenko// Журнал прикладной спектроскопии. – 2016. – Т. 83, № 6-16. – С. 458-459. (Scopus, Web Science, IF=0.572).
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V. Herasimenka, R.Navitskaya, I.Stashkevich. The matrix effect on the generation of neodymium laser with quasi-three-level scheme// Журнал прикладной спектроскопии, 2016, т.83, №6-16, с.509. (Scopus, Web Science, IF=0.572).
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I.I.Rushnova, E.A.Melnikova, A.L.Tolstik. Formation, propagation, and interaction of nematicons // Nonlinear Phenomena in Complex Systems – 2017. – V.20, №1. – P.82–88. (РИНЦ, IF=0.129).
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O.S.Kabanova, E.A.Melnikova, O.G.Romanov, A.L.Tolstik. Linear and nonlinear light beam propagation in liquid-crystal waveguide arrays // Nonlinear Phenomena in Complex Systems – 2017. – V.20, №4. (РИНЦ, IF=0.129).
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Ermalitskaya Ksenia F. Badania składu chemicznego zapinek ze zbiorów Białoruskiego Państwowego Uniwersytet // Światowit Supplement Series P: Prehistory and Middle Ages, vol. XVII. – P. 89-92.
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Design of Carbon Nanotube-Based Broadband Radar Absorber for Ka-Band Frequency Range / D. Bychanok, G. Gorokhov, D. Meisak, P. Kuzhir, S. Maksimenko, Y. Wang, Z. Han, X. Gao and H. Yue // Progress In Electromagnetics Research M. – 2017. – Vol. 53. – P. 9-16. (Scopus, Web Science, IF=2.404).
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Fully carbon metasurface: Absorbing coating in microwaves / D. Bychanok, S. Li, G. Gorokhov, K. Piasotski, D. Meisak, P. Kuzhir, E.A. Burgess, C. P. Gallagher, F. Y. Ogrin, A.P. Hibbins, A. Pasc, A. Sanchez-Sanchez, V. Fierro, and A. Celzard // Journal of Applied Physics. – 2017. – Vol. 121. – 165103, doi: 10.1063/1.4982232. (Scopus, Web Science, IF=2.068).
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Effective Carbon Nanotube/Phenol Formaldehyde Resin Based Double-Layer Absorbers of Microwave Radiation: Desing and Modeling / D. Bychanok, A. Liubimau, K. Piasotski, G. Gorokhov, D. Meisak, I. Bochkov, P. Kuzhir // Phys. Status Solidi B. – 2017, 00, 1700224, DOI: 10.1002/pssb.201700224. (Scopus, Web Science, IF=1.52).
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T.Kornienko, M.Kisteneva, S.Shandarov, A.Tolstik. Light-induced effects in sillenite crystals with shallow and deep traps // Physics Procedia – 2017. – V.86. – P.105–112. (Scopus, Web Science, IF=0.7).
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A.Trofimova, S.Nazarov, A.Tolstik, U. Mahilniy, E.Tolstik, R.Heintzmann. Multiplexed holograms in phenanthrenequinone–polymethylmethacrylate composite for microscopic applications // Optical Materials Express – 2017. – V.7, №5. – P.1446–1452. (Scopus, Web Science, IF= 2.657).
Academic Disciplines and Courses
Courses Taught in the 2025-2026 Academic Year, First Stage of Higher Education (Undergraduate Level)
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Laser Physics
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Nonlinear Optics
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Optics of Anisotropic Media
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Optical Information Processing
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Coherent Optics and Holography
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Laser Technology
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Modern Methods of Spectroscopy
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Radiation Detectors and Sources
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Fundamentals of Spectroscopy and Spectral Analysis
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Molecular Spectroscopy and Luminescence
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Laser Physics and Nonlinear Optics
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Laser Physics (General Course)
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Laser Systems (General Course)
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Quantum Electronics (General Course)
Laboratory Workshops
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Laboratory of Specialization "Laser Physics"
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Laboratory of Specialization "Nonlinear Optics"
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Laboratory Special Workshop "Laser Systems and Technology"
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Laboratory of Specialization "Experimental Spectroscopy"
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Laboratory Special Workshop "Molecular Spectroscopy and Luminescence"
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Laboratory Special Workshop "Laser Physics and Nonlinear Optics"
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Laboratory Workshop "Laser Systems" (General Course)
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Laboratory Workshop "Quantum Electronics" (General Course)
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Laboratory Workshop "Introduction to Laser Physics" (General Course)
Courses Taught, 2025-2026 Academic Year, Second Stage of Higher Education (Master’s Level)
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Laser Spectroscopy and Materials Diagnostics
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Modern Laser Systems
Laboratory Workshops
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Laboratory Special Workshop "Laser and Optical Spectroscopy"
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Laboratory Special Workshop "Laser Emission Spectroscopy"