Draft:Iurii Minin
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Iurii B. Minin | |
|---|---|
Юрий Борисович Минин | |
| Alma mater | Moscow Institute of Physics and Technology; Skolkovo Institute of Science and Technology |
| Scientific career | |
| Fields | Computational electromagnetics, numerical analysis, photonics, laser interferometry |
| Workplaces | Kotelnikov Institute of Radio Engineering and Electronics (Fryazino Branch); Skolkovo Institute of Science and Technology |
Iurii B. Minin (Russian: Юрий Борисович Минин; also romanized as Yuri Borisovich Minin) is a research scientist whose work covers computational electromagnetics, numerical methods for photonic-device modelling and inverse design, GPU-accelerated linear solvers, and precision laser interferometry.[1][2] In 2026, the Journal of Communications Technology and Electronics listed him as a research officer at the Fryazino Branch of the Kotelnikov Institute of Radioengineering and Electronics of the Russian Academy of Sciences.[1]
Education and affiliations
[edit]Minin's research profile lists bachelor's and master's training in applied physics and mathematics at the Moscow Institute of Physics and Technology (MIPT), followed by a master's degree in computational science and engineering at the Skolkovo Institute of Science and Technology (Skoltech).[3] MIPT records also list Yuri Borisovich Minin among students admitted in 2013.[4]
His publication affiliations have included Skoltech, the Fryazino Branch of the Kotelnikov Institute, and MIPT.[5][6][2]
Research
[edit]Laser interferometry
[edit]Minin's earlier publications concerned methods and instruments for precision distance and displacement measurement using laser interferometry. A 2018 journal paper with Ekaterina Krupnik and Mstislav Dubrov described a laser-interferometric distance and displacement meter combining electronic distance determination with interferometric registration of displacement.[7] Related work was presented at IEEE conferences in 2018 and 2019,[8][9] and subsequent publications examined both distance measurement and interferometric monitoring applications.[10][2]
Minin, Dubrov and Vladislav Shevchenko are named inventors on Russian patent RU 2721667, issued in 2020 for a method and device for precision laser-interference measurement of distances and displacements.[11]
Computational electromagnetics and photonic inverse design
[edit]Minin has also worked on numerical methods for electromagnetic-field computation and the inverse design of photonic components. A 2018 IEEE conference paper with Egor Nuzhin, Alexey Boyko, Mikhail Litsarev and Ivan Oseledets used an FFT-JVIE solver in an evolutionary structural-optimization algorithm for inverse design of wave devices.[12]
Later work focused on GPU implementations of GMRES, Toeplitz-structured operators, Green's-function integral-equation methods and FFT acceleration for photonic topology optimization.[5][13][6] In a 2026 paper, Minin presented a two-dimensional GFIEM–GMRES method accelerated by FFT; the published numerical results reported lower memory use and reduced computational complexity for the block-Toeplitz operator formulation.[1] A related paper with Sergey Matveev appeared in the Lecture Notes in Computer Science proceedings of Russian Supercomputing Days 2025.[14]
A 2023 paper on fast electric-field calculation for topology optimization received a prize at the 19th Anisimkin Competition for Young Scientists.[15]
Publications
[edit]The following list brings together the works listed in Minin's institutional publication record and later publisher records. Where a work has a DOI, the DOI resolves to the publisher or record page.
- Minin, I. B.; Matveev, S. A. (2026). "Optimization and Application of the Fast and Efficient Approach to Electromagnetic Field Computations with Limited Computer Resources". In Supercomputing: Russian Supercomputing Days 2025. Lecture Notes in Computer Science, vol. 16196. Springer. pp. 96–107. doi:10.1007/978-3-032-13127-0_7.
- Minin, I. B. (2026). "Efficient Computation of Electromagnetic Fields with Limited Computer Resources: A New Approach". Journal of Communications Technology and Electronics. 71 (3): 313–318. doi:10.7868/S3034590126030057.
- Minin, I. B. (2023). "Fast and Efficient Method to Calculate Electric Fields as Applied to Topology Optimization of Microdevices". Journal of Communications Technology and Electronics. 68: 1206–1208. doi:10.1134/S106422692310011X. Russian original: "Быстрый и эффективный подход для расчета электрических полей с применением к топологической оптимизации микроустройств", Радиотехника и электроника, 68 (10): 989–991. doi:10.31857/S003384942310011X.
- Minin, Iurii; Matveev, Sergey (2022). "High-Performance Computational Approach for Inverse Design of Passive Photonic Components". Optica Advanced Photonics Congress 2022. Paper JTu6B.6. doi:10.1364/ASSL.2022.JTu6B.6.
- Minin, I. B.; Matveev, S. A.; Fedorov, M. V.; Zacharov, I. E.; Rykovanov, S. G. (2021). "Benchmarks of Cuda-Based GMRES Solver for Toeplitz and Hankel Matrices and Applications to Topology Optimization of Photonic Components". Computational Mathematics and Modeling. 32 (4): 438–452. doi:10.1007/s10598-022-09545-2.
- Minin, Iurii; Kazakov, Ivan; Kontorov, Sergey; Shipulin, Arkady; Matveev, Sergey; Fedorov, Maxim (2021). "Topology Optimizer for Inverse Design and Fabrication of Passive Photonic Integrated Components Using Weighted Target". Laser Congress 2021 (ASSL,LAC). Paper JTu1A.45. doi:10.1364/ASSL.2021.JTu1A.45.
- Minin, Iurii; Bulatov, Igor; Korobov, Nikita; Dubrov, Mstislav; Fedorov, Maxim (2021). "Investigation of High-Precision Laser Instrument for Distance and Displacement Measurements". Frontiers in Optics + Laser Science 2021. Paper JTu1A.108. doi:10.1364/FIO.2021.JTu1A.108.
- Minin, I. B.; Alexandrov, D. V.; Dubrov, M. N.; Fedorov, M. V. (2021). "Investigation of High-Precision Laser Instrument for Fabrication of Integrated Circuits and Monitoring of Seismic and Gravitational Processes". Problems of Advanced Micro- and Nanoelectronic Systems Development, no. 4, pp. 182–186.
- Minin, Yu. B.; Fedorov, M. V. (2021). "Быстрый и эффективный подход и исследование его реализации для проектирования волновых компонент" [Fast and Efficient Approach and Its Implementation Study for the Design of Wave Components]. Проблемы разработки перспективных микро- и наноэлектронных систем (МЭС), no. 4, pp. 187–191.
- Minin, Iu. B.; Shevchenko, V. M.; Dubrov, M. N. (2019). "Development and Investigation of Precision Laser-Interferometric Meter for Distance and Displacement Monitoring". 2019 IEEE 8th International Conference on Advanced Optoelectronics and Lasers (CAOL), pp. 220–224. doi:10.1109/CAOL46282.2019.9019527.
- Minin, I. B.; Nuzhin, E. E.; Boyko, A. I.; Litsarev, M. S.; Oseledets, I. V. (2018). "Evolutionary Structural Optimization Algorithm Based on FFT-JVIE Solver for Inverse Design of Wave Devices". 2018 Engineering and Telecommunication (EnT-MIPT), pp. 146–150. doi:10.1109/EnT-MIPT.2018.00040.
- Minin, I. B.; Dubrov, M. N.; Krupnik, E. S. (2018). "The Construction Principle Development of Precision Laser-Interferometric Meter of Distances and Displacements". 2018 Engineering and Telecommunication (EnT-MIPT), pp. 113–117. doi:10.1109/EnT-MIPT.2018.00032.
- Minin, Yu. B.; Krupnik, E. S.; Dubrov, M. N. (2018). "Прецизионный лазерно-интерферометрический измеритель расстояний и перемещений" [Precision laser-interferometric meter of distances and displacements]. Известия высших учебных заведений. Приборостроение (Journal of Instrument Engineering). 61 (10): 892–896. doi:10.17586/0021-3454-2018-61-10-892-896.
- Minin, Yu. B.; Krupnik, E. S.; Dubrov, M. N. (2017). "Разработка прецизионного лазерно-интерферометрического измерителя расстояний и перемещений". Conference contribution listed in the programme of the 60th MIPT Scientific Conference, 23 November 2017.
Patent
[edit]- RU 2721667 (2020), "Method and device for precision laser-interference measurement of distances and displacements", inventors Yuri B. Minin, Mstislav N. Dubrov and Vladislav M. Shevchenko.[11] Patent text.
References
[edit]- 1 2 3 Minin, I. B. (2026). "Efficient Computation of Electromagnetic Fields with Limited Computer Resources: A New Approach". Journal of Communications Technology and Electronics. 71 (3): 313–318. doi:10.7868/S3034590126030057. Retrieved 2026-08-19.
- 1 2 3 Minin, Iurii; Bulatov, Igor; Korobov, Nikita; Dubrov, Mstislav; Fedorov, Maxim (2021). Investigation of High-Precision Laser Instrument for Distance and Displacement Measurements. Frontiers in Optics + Laser Science 2021. Optica Publishing Group. doi:10.1364/FIO.2021.JTu1A.108. JTu1A.108. Retrieved 2026-08-19.
- ↑ "Iurii Minin – research profile". ResearchGate. Retrieved 2026-08-19.
- ↑ "Full alphabetical list of persons admitted" (in Russian). Moscow Institute of Physics and Technology. 2013-08-05. Retrieved 2026-08-19.
- 1 2 Minin, I. B.; Matveev, S. A.; Fedorov, M. V.; Zacharov, I. E.; Rykovanov, S. G. (2021). "Benchmarks of Cuda-Based GMRES Solver for Toeplitz and Hankel Matrices and Applications to Topology Optimization of Photonic Components". Computational Mathematics and Modeling. 32 (4): 438–452. doi:10.1007/s10598-022-09545-2. Retrieved 2026-08-19.
- 1 2 Minin, Iurii; Matveev, Sergey (2022). High-Performance Computational Approach for Inverse Design of Passive Photonic Components. Optica Advanced Photonics Congress 2022. Optica Publishing Group. doi:10.1364/ASSL.2022.JTu6B.6. JTu6B.6. Retrieved 2026-08-19.
- ↑ Minin, Yu. B.; Krupnik, E. S.; Dubrov, M. N. (2018). "Precision laser-interferometric meter of distances and displacements". Journal of Instrument Engineering. 61 (10): 892–896. doi:10.17586/0021-3454-2018-61-10-892-896. Retrieved 2026-08-19.
- ↑ Minin, I. B.; Dubrov, M. N.; Krupnik, E. S. (2018). The Construction Principle Development of Precision Laser-Interferometric Meter of Distances and Displacements. 2018 Engineering and Telecommunication (EnT-MIPT). IEEE. pp. 113–117. doi:10.1109/EnT-MIPT.2018.00032. Retrieved 2026-08-19.
- ↑ Minin, Iu. B.; Shevchenko, V. M.; Dubrov, M. N. (2019). Development and Investigation of Precision Laser-Interferometric Meter for Distance and Displacement Monitoring. 2019 IEEE 8th International Conference on Advanced Optoelectronics and Lasers (CAOL). IEEE. pp. 220–224. doi:10.1109/CAOL46282.2019.9019527. Retrieved 2026-08-19.
- ↑ Minin, I. B.; Alexandrov, D. V.; Dubrov, M. N.; Fedorov, M. V. (2021). Investigation of High-Precision Laser Instrument for Fabrication of Integrated Circuits and Monitoring of Seismic and Gravitational Processes (PDF). Problems of Advanced Micro- and Nanoelectronic Systems Development. pp. 182–186. Retrieved 2026-08-19.
- 1 2 "Intellectual property objects" (in Russian). Skolkovo Institute of Science and Technology. Retrieved 2026-08-19.
- ↑ Minin, I. B.; Nuzhin, E. E.; Boyko, A. I.; Litsarev, M. S.; Oseledets, I. V. (2018). Evolutionary Structural Optimization Algorithm Based on FFT-JVIE Solver for Inverse Design of Wave Devices. 2018 Engineering and Telecommunication (EnT-MIPT). IEEE. pp. 146–150. doi:10.1109/EnT-MIPT.2018.00040. Retrieved 2026-08-19.
- ↑ Minin, Iurii; Kazakov, Ivan; Kontorov, Sergey; Shipulin, Arkady; Matveev, Sergey; Fedorov, Maxim (2021). Topology Optimizer for Inverse Design and Fabrication of Passive Photonic Integrated Components Using Weighted Target. Laser Congress 2021 (ASSL,LAC). Optica Publishing Group. doi:10.1364/ASSL.2021.JTu1A.45. JTu1A.45. Retrieved 2026-08-19.
- ↑ Minin, Iurii B.; Matveev, Sergey A. (2026). Optimization and Application of the Fast and Efficient Approach to Electromagnetic Field Computations with Limited Computer Resources. Russian Supercomputing Days 2025. Lecture Notes in Computer Science. Vol. 16196. Springer. pp. 96–107. doi:10.1007/978-3-032-13127-0_7. Retrieved 2026-08-19.
- ↑ Minin, I. B. (2023). "Fast and Efficient Method to Calculate Electric Fields as Applied to Topology Optimization of Microdevices". Journal of Communications Technology and Electronics. 68: 1206–1208. doi:10.1134/S106422692310011X. Retrieved 2026-08-19.
External links
[edit]Category:Living people Category:Computational physicists Category:Moscow Institute of Physics and Technology alumni
