63 citations · 127 across the 15 of their papers we have counts for
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Improving the efficiency of cascade detection by the Baikal-GVD neutrino telescope
V. M. Aynutdinov, V. A. Allakhverdyan, A. D. Avrorin +62
The deployment of the Baikal-GVD deep underwater neutrino telescope is in progress now. About 3500 deep underwater photodetectors (optical modules) arranged into 12 clusters are op…
Time Calibration of the Baikal-GVD Neutrino Telescope with Atmospheric Muons
V. M. Aynutdinov, V. A. Allakhverdyan, A. D. Avrorin +62
We present a new procedure for time calibration of the Baikal-GVD neutrino telescope. The track reconstruction quality depends on accurate measurements of arrival times of Cherenko…
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…
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…