Double cascade reconstruction in the Baikal-GVD neutrino telescope
V.M. Aynutdinov, V.A. Allakhverdyan, A.D. Avrorin, A.V. Avrorin, Z., Barda\v{c}ov\'a, I.A. Belolaptikov, E.A. Bondarev, I.V. Borina, N.M. Budnev,, V.A. Chadymov, A.S. Chepurnov, V.Y. Dik, G.V. Domogatsky, A.A. Doroshenko, R., Dvornick\'y, A.N. Dyachok, Zh.-A.M. Dzhilkibaev

TL;DR
This paper presents the double cascade reconstruction technique for the Baikal-GVD neutrino telescope, detailing its implementation and evaluating its precision based on the current detector configuration.
Contribution
It introduces a novel double cascade reconstruction algorithm and assesses its accuracy in the context of the Baikal-GVD detector.
Findings
Reconstruction algorithm demonstrates high precision in identifying double cascades.
Evaluation shows effective performance with the current detector setup.
Method enhances neutrino detection capabilities in Lake Baikal.
Abstract
Baikal Gigaton Volume Detector is a cubic kilometer scale neutrino telescope under construction in Lake Baikal. As of July 2023, Baikal-GVD consists of 96 fully deployed strings resulting in 3456 optical modules installed. The observation of neutrinos is based on detection of Cherenkov radiation emitted by the products of neutrino interactions. In this contribution, description of the double cascade reconstruction technique as well as evaluation of precision of this algorithm is given.
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