федеральное государственное автономное образовательное учреждение высшего образования
«Самарский национальный исследовательский университет имени академика С.П. Королева»

Agafonov, Andrey N.

  • Department of Nanoengineering, associate professor
  • Student Enrollment Office, engineer
  • Department of Chemistry, associate professor
    2023
    • 1 Platonov I.A., Platonov V.I., Agafonov A.N. etc. Технология создания и исследование газодинамических характеристик микрофлюидных газохроматографических колонок на кремниевых подложках // Sorbtsionnye i Khromatograficheskie Protsessy 2023. — Vol. 23. № 3. — P. 343-350
    • 2 Milanina K.I., Agafonov A.N., Andreeva T.A. Method of Eliminating Flatness Defects of Heat Bonded Glass Plates // Glass and Ceramics (English translation of Steklo i Keramika) 2023. — Vol. 79. Issue 9-10. № 9-10. — P. 358-362
    2022
    • 1 Agafonov A.N., Suyundukova D.R., Latukhina N.V. etc. Investigation of Porous Silicon Nanocomposites with Hydroxyapatite Powder Solubility // Journal of Biomedical Photonics and Engineering 2022. — Vol. 8. Issue 2. № 2.
    • 2 Agafonov A.A., Yumaganov A.S., Myasnikov V.V. Adaptive Traffic Signal Control Based on Neural Network Prediction of Weighted Traffic Flow // Optoelectronics, Instrumentation and Data Processing 2022. — Vol. 58. Issue 5. № 5. — P. 503-513
    2021
    • 1 Agafonov A.N., Reshetnikov A.S., Tzibizov I.A. etc. The technology of manufacturing metal-dielectric photonic crystals for THz and millimeter ranges by 3D printing // Journal of Physics: Conference Series. — 2021. — Vol. 1745. Issue 1.
    • 2 Agafonov A.N., Eremin A. V. , Milanina K.I. etc. Application of molecular dynamics for modeling processes in microfluidic devices // Journal of Physics: Conference Series. — 2021. — Vol. 1745. Issue 1.
    • 3 Yablokov D.E., Pavelyev V.S., Agafonov A.N. etc. Computer optics software construction using multi-paradigm design // Journal of Physics: Conference Series. — 2021. — Vol. 1745. Issue 1.
    • 4 Pavelyev V.S., Agafonov A.N., Reshetnikov A.S. etc. Fabrication and investigation of terahertz optics devices based on metal-dielectric photonic quasicrystals // Proceedings of ITNT 2021 - 7th IEEE International Conference on Information Technology and Nanotechnology. — 2021. —
    2020
    • 1 Agafonov A.N., Platonov V.I., Batalova A.M. etc. Development of the manufacturing technology of microfluidic systems on glass plates // AIP Conference Proceedings. — 2020. — Vol. 2276.
    • 2 Knyazev B.A., Choporova Y.Y., Gerasimov V.V. etc. Experiments on Generation of Vortex Surface Plasmon Polaritons on Plane and Cylindrical Conductors in Mid-Infrared and THz Ranges // International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz. — 2020. — Vol. 2020-November. — P. 348-349
    • 3 Yazykova M.Y., Agafonov A.N., Simonova A.Y. etc. Ag-nanofilm antimicrobial system on the base of bacterial cellulose // AIP Conference Proceedings. — 2020. — Vol. 2276.
    • 4 Pavelyev V.S., Tukmakov K.N., Agafonov A.N. etc. Technologies of microsystem technique and nanosensorics // IOP Conference Series: Materials Science and Engineering. — 2020. — Vol. 984. Issue 1.
    2019
    • 1 Potienko K.I., Agafonov A.N. Study of the separation processes of gases in the microchannel based on the stochastic simulation // Journal of Physics: Conference Series. — 2019. — Vol. 1368. Issue 4.
    • 2 Agafonov A.N., Knyazev B.A., Pavel’ev V.S. etc. Elements of the Terahertz Power Reflective Optics with Free-Form Surfaces // Optoelectronics, Instrumentation and Data Processing 2019. — Vol. 55. Issue 2. — P. 148-153
    2018
    • 1 Platonov I.A., Platonov V.I., Agafonov A.N. etc. Study of the sorption properties of planar micropacked gas-chromatographic columns of polycapillary and pillar types // AIP Conference Proceedings. — 2018. — Vol. 1989.
    • 2 Pavelyev V.S., Agafonov A.N., Volodkin B. O. etc. Terahertz optical elements for control of high-power laser irradiation // EPJ Web of Conferences. — 2018. — Vol. 195.
    2016
    • 1 Platonov I.A., Platonov V.I., Pavelyev V.S. etc. Planar gas chromatography column on glass plate with nanodispersed silica as the stationary phase // AIP Conference Proceedings. — 2016. — Vol. 1724.
    • 2 Agafonov A.N., Volodkin B. O. , Kachalov D.G. etc. Focusing of Novosibirsk Free Electron Laser (NovoFEL) radiation into paraxial segment // Journal of Modern Optics 2016. — Vol. 63. Issue 11. — P. 1051-1054
    • 3 Platonov I.A., Platonov V.I., Agafonov A.N. etc. Planar gas chromatography column on glass plate for ultra–fast separation low bowling hydrocarbons with nanodispersed silica as the stationary phase // ICANN-2016. — 2016. — P. 116-117
    2015
    • 1 I.A. Platonov, V.I. Platonov, V.S. Pavelyev etc. Planar Gas Chromotography Column on Aluminum Plate with Multi-Walled Carbon Nanotubes As Stationary Phase // 2nd Inrernational Conference on Emerging Technologies: Micro to Nano 2015 . — 2015. — P. 125-127
    • 2 Agafonov A.N., Choporova Y.Y., Kaveev A.K. etc. Control of transverse mode spectrum of Novosibirsk free electron laser radiation // Applied Optics 2015. — Vol. 54. Issue 12. — P. 3635-3639
    • 3 Agafonov A.N., Volodkin B. O. , Kaveev A.K. etc. Binary doe with elongated focal depth to focus terahertz free electron laser radiation (NOVOFEL) // Computer Optics 2015. — Vol. 39. Issue 1. — P. 58-63
    2014
    • 1 Agafonov A.N., Volodkin B. O. , Kaveev A.K. etc. Control of transverse modal spectrum of terahertz laser irradiation by binary silicon optical elements // Computer Optics 2014. — Vol. 38. Issue 4. — P. 763-769
    • 2 Agafonov A.N., Volodkin B. O. , Volotovskiy S. G. etc. Optical elements for focusing of terahertz laser radiation in a given two-dimensional domain // Optical Memory and Neural Networks (Information Optics) 2014. — Vol. 23. Issue 3. — P. 185-190
    2013
    • 1 Agafonov A.N., Vlasenko M.G., Volodkin B. O. etc. Diffractive lenses for high-power terahertz radiation beams // Bulletin of the Russian Academy of Sciences: Physics 2013. — Vol. 77. Issue 9. — P. 1164-1166
    • 2 Agafonov A.N., Volodkin B. O. , Volotovskiy S. G. etc. Silicon optics for focusing of terahertz laser radiation in a given two-dimensional domain // Computer Optics 2013. — Vol. 37. Issue 4. — P. 464-470
    • 3 VOLODKIN B.O., PAVELEV V.S., TUKMAKOV K.N. etc. Silicon Diffractive Optical Elements forTransformation of Terahertz Novosibirsk Free ElectronLaser Radiation. // International conference ICONO/LAT. — 2013. — P. 43-44
    • 4 AGAFONOV A.N., VOLODKIN B.O., TUKMAKOV K.N. etc. Кремниевая оптика для фокусировки лазерного излучения терагерцового диапазона в заданные двумерные области // Computer Optics 2013. — № т.37, №4. — P. 464-470
    2012
    • 1 Knyazeva B.A., Choporova Yu.Yu., Gerasimov V.V. etc. Study of diffractive optical elements using high-power radiation of terahertz Novosibirsk free electron laser // 37th International Conference on Infrared, Millimeter andTerahertz Waves. — 2012. —
    • 2 Knyazev B.A., Choporova Yu.Yu., Gerasimov V.V. etc. Study of diffractive optical elements using high-power radiation of novosibirsk terahertz free electron laser // International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz. — 2012. —
    • 3 Knyazev B.A., Choporova Yu.Yu., Gerasimov V.V, etc. Diffractive optical elements for the teraherz region // Teraherz and Microwave radiation: Generation, Detection and Applications. — 2012. — P. 111-111
    2011
    • 1 AGAFONOV A.N. Resolution improvement of local thermochemical oxidation of chrome thin films stimulated by laser radiation // Asia-Pacific Conference on Fundamental Problems of Opto- and Microelectronics. — 2011. — P. 1 DVD-ROM, SAMP29
    2010
    • 1 Agafonov A.N., Moiseev O.Y., Korlyukov A.A. Analysis of dependence of local thermochemical oxidation technology resolution from photosensitive chrome film structure parameters // Computer Optics 2010. — Vol. 34. Issue 1. — P. 101-108
    • 2 AGAFONOV A.N., KORLYuKOV A.A., MOISEEV O. Yu. АНАЛИЗ ЗАВИСИМОСТИ РАЗРЕШАЮЩЕЙ СПОСОБНОСТИ ТЕХНОЛОГИИ ЛОКАЛЬНОГО ТЕРМОХИМИЧЕСКОГО ОКИСЛЕНИЯ ОТ ПАРАМЕТРОВ СТРУКТУРЫ СВЕТОЧУВСТВИТЕЛЬНОЙ ПЛЕНКИ ХРОМА // Computer Optics 2010. — № том 34, № 1. — P. 101-108