Персона: Шутенко, Виктор Викторович
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Study of the anisotropy of cosmic rays during the periods of the minima of the 24th solar cycle using the muonography method according to the data of the URAGAN muon hodoscope
2022, Yashin, I. I., Astapov, I. I., Dmitrieva, A. N., Gvishiani, A. G., Getmanov, V. G., Kovylyaeva, A. A., Mishutina, Yu. N., Soloviev, A. A., Shutenko, V. V., Яшин, Игорь Иванович, Астапов, Иван Иванович, Дмитриева, Анна Николаевна, Мишутина, Юлия Николаевна, Шутенко, Виктор Викторович
Muon hodoscope URAGAN (MEPhI, Moscow) with an area of 45 sq. m is capable of real time detection of the tracks of all muons arriving from the upper celestial hemisphere with a high spatial and angular accuracy (1 cm and 1 degree, respectively). The measured angular distribution of the muons flux over a certain period of exposure time and expressed in R.M.S. deviations from an averaged reference matrix and corrected for barometric and temperature effects represents a matrix-muonograph (by analogy with X-ray radiography) of the Earth's atmosphere and near-terrestrial space. Such muonograph contains information on the current variation the flux of cosmic muons associated with modulation processes in the heliosphere, magnetosphere and atmosphere of the Earth. The sequence of muonographs converted to the GSE coordinate system allows one to study in real time the dynamics of cosmic ray anisotropy and to identify in advance geoeffective processes in the heliosphere associated with solar activity. Results of the analysis of the anisotropy of the cosmic ray muon flux at the minima of the 23rd (2009-2010) and 24th (2018-2019) solar cycles are discussed. © Copyright owned by the author(s).
Studying Muon Bundles of Inclined Air Showers in the NEVOD-DECOR Experiment
2023, Bogdanov, A. G., Barbashina, N. S., Khokhlov, S. S., Kindin, V. V., Kokoulin, R. P., Kompaniets, K. G., Konovalova, A. Y., Petrukhin, A. A., Shutenko, V. V., Vorobev, V. S., Yashin, I. I., Yurina, E. A., Zadeba, E. A., Богданов, Алексей Георгиевич, Барбашина, Наталья Сергеевна, Хохлов, Семен Сергеевич, Киндин, Виктор Владимирович, Кокоулин, Ростислав Павлович, Компаниец, Константин Георгиевич, Коновалова, Алена Юрьевна, Петрухин, Анатолий Афанасьевич, Шутенко, Виктор Викторович, Воробьев, Владислав Станиславович, Яшин, Игорь Иванович, Юрина, Екатерина Александровна, Задеба, Егор Александрович
Method of Muonography and Prospects of Its Further Development
2021, Barbashina, N. S., Petrukhin, A. A., Shutenko, V. V., Барбашина, Наталья Сергеевна, Петрухин, Анатолий Афанасьевич, Шутенко, Виктор Викторович
© 2021, Pleiades Publishing, Ltd.Abstract: Muonography is an analog of other similar concepts such as X-ray radiography, electronography, neutronography, etc. based on the detection of penetrating radiation whose interaction with objects under study causes changes in the initial flux of the used particles. Unlike all other ‘‘graphies’’ which use artificially formed particle fluxes, muons are of natural origin, since they are formed as a result of interactions of primary cosmic rays with the nuclei of atoms in the atmosphere. Since muons keep well the direction of motion of primary particles, muon flux allows studying of disturbances in the heliosphere and magnetosphere of the Earth which lead to variations of the flux of primary cosmic rays. Also, disturbances in the atmosphere directly affect the muon flux, thus it can be used to study atmospheric processes. The paper considers the main ideas of the method of muonography, as well as the examples of its application for studying various processes and phenomena in the heliosphere, magnetosphere and atmosphere of the Earth. In frames of the further development of muonography, we discuss the expediency of creating a network of muon hodoscopes in the Russian Federation for early detection of hazardous processes and phenomena over its territory.
Dependence of the Energy Deposit of Muon Bundles on Local Muon Density and Zenith Angle
2019, Mannocchi, G., Saavedra, O., Trinchero, G., Yurina, E. A., Barbashina, N. S., Bogdanov, A. G., Kindin, V. V., Kokoulin, R. P., Kompaniets, K. G., Petrukhin, A. A., Khomyakov, V. A., Khokhlov, S. S., Shutenko, V. V., Yashin, I. I., Юрина, Екатерина Александровна, Барбашина, Наталья Сергеевна, Богданов, Алексей Георгиевич, Киндин, Виктор Владимирович, Кокоулин, Ростислав Павлович, Компаниец, Константин Георгиевич, Петрухин, Анатолий Афанасьевич, Хохлов, Семен Сергеевич, Шутенко, Виктор Викторович, Яшин, Игорь Иванович
© 2019, Allerton Press, Inc.Abstract: Energy characteristics of the muon component of extensive air showers (EASes) are investigated at the NEVOD experimental complex in order to solve the problem of a detected excess of muons in EASes at ultrahigh energies, relative to simulation results. The dependences of the energy deposit of muon bundles on the zenith angle and the local muon density are obtained for primary energies of 10–1000 PeV. The results from comparing the data to simulations performed with the CORSIKA program are presented.
Update on the Combined Analysis of Muon Measurements from Nine Air Shower Experiments
2022, Soldin, D., Barbashina, N., Bogdanov, A. G., Khokhlov, S. S., Kindin, V. V., Kokoulin, R. P., Kompaniets, K. G., Petrukhin, A. A., Shutenko, V. V., Yashin, I. I., Yurina, E. A., Zadeba, E. A., Besson, D., Spiering, C., Барбашина, Наталья Сергеевна, Богданов, Алексей Георгиевич, Хохлов, Семен Сергеевич, Киндин, Виктор Владимирович, Кокоулин, Ростислав Павлович, Компаниец, Константин Георгиевич, Петрухин, Анатолий Афанасьевич, Шутенко, Виктор Викторович, Яшин, Игорь Иванович, Юрина, Екатерина Александровна, Задеба, Егор Александрович
Scintillation Strip Detector of a Hybrid Hodoscope for Muon Tomography of Large-scale Objects
2024, Pasyuk, N. A., Kompaniets, K. G., Petrukhin, A. A., Tselinenko, M. Y., Shutenko, V. V., Yashin, I. I., Пасюк, Никита Александрович, Компаниец, Константин Георгиевич, Петрухин, Анатолий Афанасьевич, Целиненко, Максим Юрьевич, Шутенко, Виктор Викторович, Яшин, Игорь Иванович
The Hybrid Trigger System of the Experimental Complex NEVOD
2024, Amelchakov, M. B., Bogdanov, A. G., Gromushkin, D. M., Zadeba, E. A., Kindin, V. V., Kokoulin, R. P., Kompaniets, K. G., Petrukhin, A. A., Khokhlov, S. S., Shulzhenko, I. A., Shutenko, V. V., Yashin, I. I., Амельчаков, Михаил Борисович, Богданов, Алексей Георгиевич, Громушкин, Дмитрий Михайлович, Задеба, Егор Александрович, Киндин, Виктор Владимирович, Кокоулин, Ростислав Павлович, Компаниец, Константин Георгиевич, Петрухин, Анатолий Афанасьевич, Хохлов, Семен Сергеевич, Шульженко, Иван Андреевич, Шутенко, Виктор Викторович, Яшин, Игорь Иванович
Simple Geometrical Model of Nucleus—Nucleus Interactions at Very High Energies
2019, Sozinov, E. S., Bogdanov, A. G., Petrukhin, A. А., Shutenko, V. V., Богданов, Алексей Георгиевич, Петрухин, Анатолий Афанасьевич, Шутенко, Виктор Викторович
© 2019, Pleiades Publishing, Ltd.In this paper we continue developing an earlier proposed model of quark-gluon blob (QGB) production with large orbital momentum, which allows to demonstrate and study different properties of nucleus-nucleus interactions. In particular, the number of nucleons and transferred energy in QGB are considered and comparison with predictions of other models is analyzed.
Cascade showers in the Cherenkov light in water
2020, Khokhlov, S. S., Bogdanov, A. G., Khomyakov, V. A., Kindin, V. V., Kokoulin, R. P., Petrukhin, A. A., Shutenko, V. V., Yashin, I. I., Хохлов, Семен Сергеевич, Богданов, Алексей Георгиевич, Киндин, Виктор Владимирович, Кокоулин, Ростислав Павлович, Петрухин, Анатолий Афанасьевич, Шутенко, Виктор Викторович, Яшин, Игорь Иванович
© 2019 Elsevier B.V.Cascade showers induced by muons have been studied in the Cherenkov water detector NEVOD with a dense spatial lattice of quasi-spherical measuring modules. The cascades from near-horizontal muons with tracks determined by means of the coordinate-tracking detector were investigated. The results of measurements of the spatial distribution of Cherenkov radiation from cascade particles in such events are presented.
Stand for Studying the Characteristics of Multiwire Drift Chambers
2024, Zadeba, E. A., Vorobev, V. S., Gazizova, D. V., Kompaniets, K. G., Miroshnichenko, E. A., Nikolaenko, R. V., Troshin, I. Yu., Khomchuk, E. P., Shulzhenko, I. A., Shutenko, V. V., Задеба, Егор Александрович, Воробьев, Владислав Станиславович, Газизова, Диана Вадимовна, Компаниец, Константин Георгиевич, Мирошниченко, Егор Андреевич, Николаенко, Роман Владимирович, Трошин, Иван Юрьевич, Хомчук, Евгений Павлович, Шульженко, Иван Андреевич, Шутенко, Виктор Викторович