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Method and portable bench for tests of the laser optical calibration system components for the Baikal-GVD underwater neutrino Cherenkov telescope
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +62
The large-scale deep underwater Cherenkov neutrino telescopes like Baikal-GVD, ANTARES or KM3NeT, require calibration and testing methods of their optical modules. These methods us…
Development of the Double Cascade Reconstruction Techniques in the Baikal-GVD Neutrino Telescope
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
The Baikal-GVD is a neutrino telescope under construction in Lake Baikal. The main goal of the Baikal-GVD is to observe neutrinos via detecting the Cherenkov radiation of the secon…
Positioning system for Baikal-GVD
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
Baikal-GVD is a kilometer scale neutrino telescope currently under construction in Lake Baikal. Due to water currents in Lake Baikal, individual photomultiplier housings are mobile…
Methods for the suppression of background cascades produced along atmospheric muon tracks in the Baikal-GVD
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
The Baikal-GVD (Gigaton Volume Detector) is a km- scale neutrino telescope located in Lake Baikal. Currently (year 2021) the Baikal-GVD is composed of 2304 optical modules di…
Data Quality Monitoring system of the Baikal-GVD experiment
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
The main purpose of the Baikal-GVD Data Quality Monitoring (DQM) system is to monitor the status of the detector and collected data. The system estimates quality of the recorded si…
The Baikal-GVD neutrino telescope as an instrument for studying Baikal water luminescence
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
We present data on the Baikal water luminescence collected with the Baikal-GVD neutrino telescope. This three-dimensional array of photo-sensors allows the observation of time and…