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Проекты » Pulsating Aurora Imaging System

Публикации проекта PAIPS

2025

  1. A. V. Artemyev, P. A. Klimov, V. D. Nikolaeva, X. J. Zhang, V. Angelopoulos, K. D. Shchelkanov. (2025) Microbursts near the electron isotropy boundary: Colocation of curvature and whistler-mode scattering. Journal of Geophysical Research, 130(12):e2025JA034477, 2025. DOI: 10.1029/2025JA034477

  2. P. A. Klimov, V. D. Nikolaeva, K. D. Shchelkanov, A. S. Kirillov, V. A. Sergeev, A. A. Belov. (2025) Auroral optical microbursts altitude from analyses of their emission spectrum. Advances in Space Research, 76(10), 6292–6309, 2025. DOI: 10.1016/j.asr.2025.09.001

  3. К. Ф. Сигаева, А. А. Белов, П. А. Климов, Б. В. Козелов, А. С. Мурашов, В. Д. Николаева, А. В. Ролдугин, Р. Е. Сараев, Д. А. Трофимов, С. А. Шаракин, К. Д. Щелканов, С. Блан, М. Казолино, В. Маршал, Э. Паризо, Г. Прево, Й. Такизава, Я. Шабельски. (2025) Статус проекта PAIPS и некоторые результаты. Известия Российской академии наук. Серия физическая, 89(5), 718–726. DOI: 10.31857/S0367676525050069

  4. К. Д. Щелканов, В. Д. Николаева, П. А. Климов. (2025) Пространственная структура УФ-микровсплесков в авроральной зоне. Известия Российской академии наук. Серия физическая, 89(5), 727–732, 2025. DOI: 10.31857/S0367676525050079

  5. S.A. Sharakin and R.E. Saraev. (2025) Bayesian reconstruction of meteors with the PAIP-V multichannel detector. Cosmic Research, 63(5), 517–530.

  6. Klimov P. A., Nikolaeva V. D., Shchelkanov K. D., Saraev R. E., Sigaeva K. F., Kotikov A. L., Belov A. A., Kozelov B. V., Murashov A. S., Roldugin A. V. (2025) Optical measurements of precipitating relativistic electron microbursts during geomagnetic disturbance and pulsating aurora. Advances in Space Research, 75(3), 3210–3219

  7. M. Yu Zotov and P. D. Zakharov. Analysis of fluorescence telescope data using machine learning methods. Bulletin of the Russian Academy of Sciences: Physics, 89(6):1024–1029, 2025.

  8. Klimov P.A., Nikolaeva V.D., Shchelkanov K.D., Saraev R.E., Sigaeva K.F., Belov A.A., Murashov A.S., Kozelov B.V., Roldugin A.V., Sharakin S.A. (2026) UV-Microbursts of Atmospheric Emission in Auroral Zone. Problems of Geocosmos Proceedings of the XV Conference and School (St. Petersburg, Russia, April 22–26, 2024) https://link.springer.com/book/9783031929274.

  9. Klimov P.A., Kotikov A.L., Nikolaeva V.D., Shchelkanov K.D. (2026) Geomagnetic Conditions During UV-Microbursts Detected by PAIPS Photometer in the Auroral Zone. Problems of Geocosmos Proceedings of the XV Conference and School (St. Petersburg, Russia, April 22–26, 2024) https://link.springer.com/book/9783031929274.

  10. Zotov M.Yu. Trusov A.A. (2025) Machine Learning in Fundamental Physics Reconstruction of Energy of Ultra-High-Energy Cosmic Rays Registered with a Fluorescence Telescope: One Time Frame Might Be Enough, Moscow University Physics Bulletin, Special Issue: Deep Learning in Computational Physics.

2024

  1. Klimov P. A., Nikolaeva V. D., Saraev R. E., Shchelkanov K. D., Belov A. A., Kozelov B. V., Murashov A. S., Roldugin A. V.,  Sharakin S. A. (2024) Microbursts of the UV atmospheric emission in the auroral zone. Advances in Space Research, 74(8), 3556-3568.
  2. Shchelkanov K. D., Belov A. A., Klimov P. A., Nikolaeva V. D., Saraev R. E., Sharakin S. A. (2024) UV microbursts in the auroral zone measured by a multichannel imaging photometer. Cosmic Research (English translation of Kosimicheskie Issledovaniya), 62, 311–317.
  3. Klimov, P. A., Belov, A. A., Kozelov, B. V., Murashov, A. S., Nikolaeva, V. D., Roldugin, A. V., ... & Shchelkanov, K. D. (2024). Frequency and Spectral Analysis of Pulsating Auroras According to Data from an Imaging Photometer at the Verkhnetulomsky Observatory. Bulletin of the Russian Academy of Sciences: Physics88(3), 318-323.
  4. Klimov, P. A., Sigaeva, K. F., & Kalegaev, V. V. (2024). Registration of Auroral Oval Emission in the Near-UV Range by the TUS Orbital Detector. Bulletin of the Russian Academy of Sciences: Physics88(2), 281-284.
  5. Sharakin S. A., Saraev R. E. (2024) Probabilistic programming methods for reconstruction of multichannel imaging detector events: ELVES and tracks. Moscow University Physics Bulletin, 79(Suppl. 2), S772–S780.
  6. Zotov M. Yu. (2024) Reconstruction of energy and arrival directions of uhecrs registered by fluorescence telescopes with neural networks. Moscow University Physics Bulletin, 79(Suppl. 2), S719–S730.

2023

  1. Klimov, P., Nikolaeva, V., Belov, A., Kozelov, B., Murashov, A., Roldugin, A., Sharakin, S. (2023). Variations in Pulsating Aurora Emission in 337 nm and 391 nm Nitrogen Spectral Lines during Geomagnetic Substorms. Universe9(10), 441.
  2. Belov, A. A., Klimov, P. A., Kozelov, B. V., Murashov, A. S., Roldugin, A. V., & Trofimov, D. A. (2023). The Upgraded Optical Complex in the Verkhnetulomsky Observatory: Equipment and First Results. Bulletin of the Russian Academy of Sciences: Physics87(2), 207-213.
  3. Сигаева, К. Ф., Климов, П. А., Белов, А. А., and Шаракин, С. А. (2023). Частотный анализ временных структур свечения атмосферы 22.02.2022 по данным изображающего фотометра в обсерватории Верхнетуломская. Physics of Auroral Phenomena”, Proc. XLVI Annual Seminar, Apatity. p. 149–153.
  4. Р. Сараев, С. Шаракин. (2023) Современные методы анализа данных на примере обнаружения и реконструкции трековых событий УФ детектора «Верхнетуломский». Physics of Auroral Phenomena”, Proc. XLVI Annual Seminar, Apatity. p. 145-148. DOI: 10.51981/2588-0039.2023.46.031
  5. A. Coleman, J. Eser, E. Mayotte, P.A. Klimov, B.V. Kozelov, et al. (2023) Ultra high energy cosmic rays The intersection of the Cosmic and Energy Frontiers. Astroparticle Physics. 149. 102819

2022

  1. Klimov, P., Kalegaev, V., Sigaeva, K., Ivanova, A., Antonyuk, G., Benghin, V., & Zolotarev, I. (2022). Near-UV Pulsations in the Aurora Region Measured by Orbital Telescope TUS during High-Intensity and Long-Duration Continuous AE Activity. Remote Sensing, 15(1), 147.
  2. Sigaeva, K. F., Klimov, P. A., Kozelov, B. V., & Sharakin, S. A. (2022, October). Pulsating Auroras from Data of Fast Imaging Photometer in Verkhnetulomsky Observatory. In International Conference and School—Problems of Geocosmos (pp. 375-382). Cham: Springer International Publishing.
  3. Klimov, P., Sharakin, S., Belov, A., Kozelov, B., Murashov, A., Saraev, R., ... & Lubchich, V. (2022). System of Imaging Photometers for Upper Atmospheric Phenomena Study in the Arctic Region. Atmosphere, 13(10), 1572.
  4. Belov, A. A., Klimov, P. A., Kozelov, B. V., Barrillon, P., Blin-Bondil, S., Marszał, W., ... & Trofimov, D. A. (2022). Optical complex for the study of pulsating aurora with sub-millisecond time resolution on the basis of the Verkhnetulomsky observatory. Journal of Atmospheric and Solar-Terrestrial Physics, 235, 105905.