collaborators

7 papers

astro-ph.HE2019

The optical noise monitoring systems of Lake Baikal environment for the Baikal-GVD telescope

GVD Collaboration, A. D. Avrorin, A. V. Avrorin +50

We present data on the luminescence of the Baikal water medium collected with the Baikal-GVD neutrino telescope. This three-dimensional array of light sensors allows the observatio…

physics.ins-det2019

The inter-cluster time synchronization systems within the Baikal-GVD detector

GVD Collaboration, A. D. Avrorin, A. V. Avrorin +50

Currently in Lake Baikal, a new generation neutrino telescope is being deployed: the deep underwater Cherenkov detector of a cubic-kilometer scale Baikal-GVD. Completion of the fir…

astro-ph.HE2019

The Baikal-GVD neutrino telescope: First results of multi-messenger studies

GVD Collaboration, A. D. Avrorin, A. V. Avrorin +50

Multi-messenger astronomy is a powerful tool to study the physical processes driving the non-thermal Universe. A combination of observations in cosmic rays, neutrinos, photons of a…

astro-ph.HE2019

Search for cascade events with Baikal-GVD

GVD Collaboration, A. D. Avrorin, A. V. Avrorin +50

Baikal-GVD is a next generation, kilometer-scale neutrino telescope currently under construction in Lake Baikal. GVD is formed by multi-megaton sub-arrays (clusters) and is designe…

astro-ph.HE2019

Neutrino Telescope in Lake Baikal: Present and Future

GVD Collaboration, A. D. Avrorin, A. V. Avrorin +50

A significant progress in the construction and operation of the Baikal Gigaton Volume Detector in Lake Baikal, the largest and deepest freshwater lake in the world, is reported. Th…

astro-ph.HE2018

Search for high-energy neutrinos from GW170817 with Baikal-GVD neutrino telescope

GVD Collaboration, A. D. Avrorin, A. V. Avrorin +50

The Advanced LIGO and Advanced Virgo observatories recently discovered gravitational waves from a binary neutron star inspiral. A short gamma-ray burst (GRB) that followed the merg…