Персона: Мачулин, Игорь Николаевич
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Antineutrino Signal in the iDREAM Detector at Kalinin NPP
2023, Abramov, A., Alyev, R., Chepurnov, A., Etenko, A., Litvinovich, E., Machulin, I., Oralbaev, A., Popov, D., Rastimeshin, A., Skorokhvatov, M., Этенко, Александр Владимирович, Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Оралбаев, Алдияр Юрьевич, Попов, Даниэль Валерьевич, Растимешин, Антон Алексеевич, Скорохватов, Михаил Дмитриевич
SiPM-matrix readout of two-phase argon detectors using electroluminescence in the visible and near infrared range
2021, Aalseth, C. E., Abdelhakim, S., Agnes, P., Ajaj, R., Grobov, A., Ilyasov, A., Levashko, N., Machulin, I. N., Skorokhvatov, M. D., Ильясов, Айдар Иршатович, Мачулин, Игорь Николаевич, Скорохватов, Михаил Дмитриевич
© 2021, The Author(s).Proportional electroluminescence (EL) in noble gases is used in two-phase detectors for dark matter searches to record (in the gas phase) the ionization signal induced by particle scattering in the liquid phase. The “standard” EL mechanism is considered to be due to noble gas excimer emission in the vacuum ultraviolet (VUV). In addition, there are two alternative mechanisms, producing light in the visible and near infrared (NIR) ranges. The first is due to bremsstrahlung of electrons scattered on neutral atoms (“neutral bremsstrahlung”, NBrS). The second, responsible for electron avalanche scintillation in the NIR at higher electric fields, is due to transitions between excited atomic states. In this work, we have for the first time demonstrated two alternative techniques of the optical readout of two-phase argon detectors, in the visible and NIR range, using a silicon photomultiplier matrix and electroluminescence due to either neutral bremsstrahlung or avalanche scintillation. The amplitude yield and position resolution were measured for these readout techniques, which allowed to assess the detection threshold for electron and nuclear recoils in two-phase argon detectors for dark matter searches. To the best of our knowledge, this is the first practical application of the NBrS effect in detection science.
Ultra-low background physics: lessons from Borexino and future steps
2025, Zavatarelli, S., Basilico, D., Bellini, G., Benziger, J., Litvinovich, E., Machulin, I., Skorokhvatov, M., Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Скорохватов, Михаил Дмитриевич
Precision measurement of the specific activity of 39 Ar in atmospheric argon with the DEAP-3600 detector
2023, Adhikari, P., Ajaj, R., Alpizar-Venegas, M., Amaudruz, P. -A., Ilyasov, A., Levashko, N., Machulin, I., Ильясов, Айдар Иршатович, Мачулин, Игорь Николаевич
Directionality measurement of CNO neutrinos with Borexino detector
2024, Basilico, D., Bellini, G., Biondi, R., Benziger, J., Litvinovich, E., Machulin, I., Skorokhvatov, M., Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Скорохватов, Михаил Дмитриевич
The study of neutrinos and antineutrinos from astrophysical sources by Borexino
2024, Zavatarelli, S., Basilico, D., Bellini, G., Benziger, J., Litvinovich, E., Machulin, I., Skorokhvatov, M., Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Скорохватов, Михаил Дмитриевич
IDREAM Detector at the Kalinin Nuclear Power Plant: Status and Prospects
2023, Abramov, A. V., Chepurnov, A. S., Etenko, A. V., Litvinovich, E. A., Machulin, I. N., Oralbaev, A. Yu., Rastimeshin, A. A., Skorokhvatov, M. D., Этенко, Александр Владимирович, Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Оралбаев, Алдияр Юрьевич, Растимешин, Антон Алексеевич, Скорохватов, Михаил Дмитриевич
Pulse-shape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data
2021, Adhikari, P., Ajaj, R., Alpizar-Venegas, M., Amaudruz, P. -A., Grobov, A., Ilyasov, A., Levashko, N., Machulin, I., Ильясов, Айдар Иршатович, Мачулин, Игорь Николаевич
© 2021, The Author(s).The DEAP-3600 detector searches for the scintillation signal from dark matter particles scattering on a 3.3 tonne liquid argon target. The largest background comes from 39Ar beta decays and is suppressed using pulse-shape discrimination (PSD). We use two types of PSD estimator: the prompt-fraction, which considers the fraction of the scintillation signal in a narrow and a wide time window around the event peak, and the log-likelihood-ratio, which compares the observed photon arrival times to a signal and a background model. We furthermore use two algorithms to determine the number of photons detected at a given time: (1) simply dividing the charge of each PMT pulse by the mean single-photoelectron charge, and (2) a likelihood analysis that considers the probability to detect a certain number of photons at a given time, based on a model for the scintillation pulse shape and for afterpulsing in the light detectors. The prompt-fraction performs approximately as well as the log-likelihood-ratio PSD algorithm if the photon detection times are not biased by detector effects. We explain this result using a model for the information carried by scintillation photons as a function of the time when they are detected.
Improved Measurement of Solar Neutrinos from the Carbon-Nitrogen-Oxygen Cycle by Borexino and Its Implications for the Standard Solar Model
2022, Appel, S., Litvinovich, E., Machulin, I., Nugmanov, R., Skorokhvatov, M., Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Скорохватов, Михаил Дмитриевич
Search for Bosonic Dark Matter Using the iDREAM Neutrino Detector at the Kalinin Nuclear Power Plant
2025, Abramov, A. V., Zhutikov, I. N., Kiselev, K. K., Litvinovich, E. A., Machulin, I. N., Oralbaev, A. Yu., Popov, D. V., Rastimeshin, A. A., Chmykhalo, D. A., Etenko, A. V., Жутиков, Иван Николаевич, Литвинович, Евгений Александрович, Мачулин, Игорь Николаевич, Оралбаев, Алдияр Юрьевич, Попов, Даниэль Валерьевич, Растимешин, Антон Алексеевич, Чмыхало, Дмитрий Александрович, Этенко, Александр Владимирович