7 citations · 21 across the 7 of their papers we have counts for
7 papers
Increasing the sensitivity of the Baikal-GVD neutrino telescope by using external strings of optical modules
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +54
The deployment of the Baikal-GVD deep underwater neutrino telescope is continuing in Lake Baikal. By April 2022, ten clusters of the telescope were put into operation, with 2880 op…
The Baikal-GVD neutrino telescope: search for high-energy cascades
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
Baikal-GVD is a neutrino telescope currently under construction in Lake Baikal. GVD is formed by multi-meganton subarrays (clusters). The design of Baikal-GVD allows one to search…
An efficient hit finding algorithm for Baikal-GVD muon reconstruction
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
The Baikal-GVD is a large scale neutrino telescope being constructed in Lake Baikal. The majority of signal detected by the telescope are noise hits, caused primarily by the lumine…
Multi-messenger and real-time astrophysics with the Baikal-GVD telescope
V. A. Allakhverdyan, A. D. Avrorin, A. V. Avrorin +63
The Baikal-GVD deep underwater neutrino experiment participates in the international multi-messenger program on discovering the astrophysical sources of high energy fluxes of cosmi…
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…
Time synchronization system of Baikal-GVD
D. P. Petukhov
The Baikal-GVD neutrino telescope currently consists of 8 clusters of 288 optical modules (photodetectors). One cluster comprises 8 strings, each of which is subdivided into 3 sect…