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Сотрудник подразделения

Публикации

  1. 22Kulya M.S., Katkovnik V.Y., Egiazarian K., Petrov N.V. Complex-domain sparse imaging in terahertz pulse time-domain holography with balance detection // Proceedings of SPIE - 2020, Vol. 11279, pp. 1127921 [SJR: 0.192]
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  2. 21Kulya M.S., Odlyanitskiy E.L., Cassar Q., Mustafin I.A., Trukhin V.N., Gavrilova P.G., Korolev D.V., Kononova Y.A., Balbekin N.S., Mounaix P., Guillet J., Petrov N.V., Smolyanskaya O.A. Fast terahertz spectroscopic holographic assessment of optical properties of diabetic blood plasma // Journal of Infrared, Millimeter, and Terahertz Waves - 2020, Vol. 41, No. 9, pp. 1041-1056 [IF: 2.54, SJR: 0.615]
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    A new method for diagnosis of diabetes mellitus is proposed, which uses for measurement a lyophilized blood plasma sample prepared in the form of a pellet. The paper develops a methodology for fast spectroscopic measurements of such pellets with terahertz pulse time-domain holography. For that reason, blood plasma pellets were experimentally measured by terahertz time-domain spectroscopy system in transmission mode and its characteristics were obtained to be then used in numerical simulation of pulse terahertz hologram formation and extraction of its optical properties. Thus, a demonstration of the proof-of-concept was given for the techniques of pellet inspection, which contains information about the presence of glycated proteins, reflecting a diabetic pathology.

  3. 20Odlyanitskiy E.L., Kulya M.S., Cassar Q., Mustafin I.A., Trukhin V.N., Korolev D.V., Kononova Y.A., Mounaix P., Guillet J.P., Petrov N.V., Smolyanskaya O.A. Reconstruction of optical parameters for blood plasma pellets using pulse terahertz holography method // Proceedings - International Conference Laser Optics 2020, ICLO 2020 - 2020, pp. 9285619
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  4. 19Petrov N.V., Perraud J., Chopard A., Guillet J., Smolyanskaya O.A., Mounaix P. Terahertz Diffractive Reflection Phase Imaging // International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz - 2020, pp. 46 [SJR: 0.15]
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  5. 18Petrov N.V., Perraud J., Chopard A., Guillet J., Smolyanskaya O.A., Mounaix P. Terahertz Phase Retrieval Imaging in Reflection // Optics Letters - 2020, Vol. 45, No. 15, pp. 4168-4171 [IF: 3.416, SJR: 1.524]
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  6. 17Petrov N.V., Perraud J., Choppard A., Guillet J., Smolyanskaya O.A., Mounaix P. Terahertz multiple-plane phase retrieval // Optics InfoBase Conference Papers - 2020, pp. HF4G.8
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  7. 16Smolyanskaya O.A., Petrov N.V., Nazarov M., Vaks V.L., Kistenev Y., Cherkasova O., Guillet J., Mounaix P., Shkurinov A. THz Spectroscopy, Holographic Approach and Phantoms Design for the Diagnostics of Socially Significant Diseases // International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz - 2020, pp. 354-355 [SJR: 0.15]
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  8. 15Kulia M.S., Petrov N.V., Tsypkin A., Egiazarian K., Katkovnik V. Hyperspectral data denoising for terahertz pulse time-domain holography // Optics express - 2019, Vol. 27, No. 13, pp. 18456-18476 [IF: 3.307, SJR: 1.394]
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  9. 14Smolyanskaya O.A., Lazareva E.N., Nalegaev S.S., Petrov N.V., Zaytsev K.I., Timoshina P.A., Tuchina D.K., Toropova Y.G., Kornyushin O.V., Babenko A.Y., Guillet J.P., Tuchin V.V., Tuchin V.V. Multimodal Optical Diagnostics of Glycated Biological Tissues // Biochemistry (Moscow) - 2019, Vol. 84, No. 1, pp. 124-143 [IF: 1.537, SJR: 0.747]
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  10. 13Balbekin N.S., Kulya M.S., Gorodetsky A.A., Petrov N.V. Solution for reconstruction enhancement of pulsed broadband THz holograms recorded with small area detectors // Proceedings of SPIE - 2018, Vol. 10677, pp. 106773J [SJR: 0.192]
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  11. 12Kulya M., Semenova V.A., Bespalov V.G., Petrov N.V. On terahertz pulsed broadband Gauss-Bessel beam free-space propagation // Scientific Reports - 2018, Vol. 8, pp. 1390 [IF: 4.259, SJR: 1.24]
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  12. 11Petrov N.V., Balbekin N.S., Kulya M.S., Gorodetsky A.A. Reconstruction enhancement of noisy data in terahertz pulse time-domain holography by iterative procedure // Proceedings of SPIE - 2018, Vol. 10677, pp. 1067721 [SJR: 0.192]
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  13. 10Petrov N.V., Nalegaev S.S., Belashov A.V., Shevkunov I.A., Putilin S.E., Lin Y., Cheng C. Time-resolved inline digital holography for the study of noncollinear degenerate phase modulation // Optics Letters - 2018, Vol. 43, No. 15, pp. 3481-3484 [IF: 3.416, SJR: 1.524]
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  14. 9Turov A.T., Balbekin N.S., Kulia M.S., Petrov N.V. Method for increasing the view field of THz holograms // Информационные технологии и нанотехнологии: сборник трудов ИТНТ-2018 (Самара, 24-27апреля 2018г.) - 2018, pp. 366-369
  15. 8Gredyukhina I.V., Plotnikova L., Balbekin N.S., Kulya M.S., Petrov N.V., Nechiporenko A.P., Uspenskaya M.V. Influence of the degree of neutralization of acrylic acid and cross-linking agent on optical properties and swelling of sodium polyacrylate // Optics and spectroscopy - 2017, Vol. 122, No. 6, pp. 877–879 [IF: 0.716, SJR: 0.283]
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  16. 7Kulya M.S., Balbekin N.S., Gredyuhina I.V., Uspenskaya M.V., Nechiporenko A.P., Petrov N.V. Computational terahertz imaging with dispersive objects // Journal of Modern Optics - 2017, Vol. 64, No. 13, pp. 1283-1288 [IF: 1.328, SJR: 0.377]
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  17. 6Балбекин Н.С., Куля М.С., Петров Н.В. Импульсная терагерцовая голография с разрешением во времени в дисперсионных средах [Terahertz pulse time-domain holography in dispersive media] // Компьютерная оптика [Computer Optics] - 2017. - Т. 41. - № 3. - С. 348-355 [IF: 0.253, SJR: 0.491]
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  18. 5Гредюхина И.В., Плотникова Л.В., Балбекин Н.С., Куля М.С., Петров Н.В., Нечипоренко А.П., Успенская М.В. Влияние степени нейтрализации акриловой кислоты и сшивающего агента на оптические свойства и набухание полиакрилата натрия // Оптика и спектроскопия - 2017. - Т. 122. - № 6. - С. 912-914 [IF: 0.484]
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  19. 4Petrov N.V., Kulya M.S., Tcypkin A.N., Bespalov V.G., Gorodetsky A.A. Application of Terahertz Pulse Time-Domain Holography for Phase Imaging // IEEE Transactions on Terahertz Science and Technology - 2016, Vol. 6, No. 3, pp. 464-472 [IF: 2.94, SJR: 1.087]
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  20. 3Semenova V.A., Kulya M.S., Petrov N.V., Grachev Y.V., Tsypkin A.N., Putilin S.E., Bespalov V.G. Amplitude-phase imaging of pulsed broadband terahertz vortex beams generated by spiral phase plate // International Conference on Infrared, Millimeter, and Terahertz Waves, IRMMW-THz - 2016, pp. 7758823 [SJR: 0.15]
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  21. 2Balbekin N.S., Kulya M.S., Rogov P.I., Petrov N.V. The modeling peculiarities of diffractive propagation of the broadband terahertz two-dimensional field // Physics Procedia - 2015, Vol. 73, pp. 49-53 [SJR: 0.248]
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  22. 1Kulya M.S., Petrov N.V., Tsypkin A.N., Bespalov V.G. Influence of raster scan parameters on the image quality for the THz phase imaging in collimated beam with a wide aperture // Journal of Physics: Conference Series - 2014, Vol. 536, No. 1, pp. 012010 [SJR: 0.21]
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