The inter-cluster time synchronization systems within the Baikal-GVD detector
- NázevTitle
- The inter-cluster time synchronization systems within the Baikal-GVD detectorThe inter-cluster time synchronization systems within the Baikal-GVD detector
- Druh výsledkuResult type
- Příspěvek ve sborníkuProceedings paper
- AutořiAuthors
- A.D. Avrorin, A.V. Avrorin, V.M. Aynutdinov, R. Bannasch, L. Fajt, F. Šimkovic, I. Štekl
- Klíčová slovaKeywords
- neutrino telescope, cluster, triggering, calibration, data transfer, Time synchronization
- KonferenceConference
- 36th International Cosmic Ray Conference (Madison, United States, 2019-07-24)
- ExperimentCollaboration
- Baikal-GVD
- DOIDOI
- 10.22323/1.358.0877
- Časopis / citaceJournal / citation
- In: Proceedings of 36th International Cosmic Ray Conference — PoS(ICRC2019), Sissa Medialab, 2021, pp. 877 · ISSN 1824-8039
- RokYear
- 2021
- JazykLanguage
- eng
- ZáznamyRecords
- ProjektProject
- Institucionální podpora na rozvoj výzkumné org.Institucionální podpora na rozvoj výzkumné org.
- CitovánoCited by
- 1 (INSPIRE-HEP)
- Plný text (open access)Full text (open access)
- https://pos.sissa.it/358/877/pdf
- Citace ke staženíDownload citation
- TXT · BibTeX
AbstraktAbstract
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 first stage of the telescope construction is planned for 2021 with the implementation of 9 clusters. Each cluster is a completely independent unit in all the aspects: triggering, calibration, data transfer, etc. A high-energy particle might leave its trace in more than a single cluster. To be able to merge events caused by such a particle in more clusters, the appropriate inter-cluster time synchronization is vital.
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 first stage of the telescope construction is planned for 2021 with the implementation of 9 clusters. Each cluster is a completely independent unit in all the aspects: triggering, calibration, data transfer, etc. A high-energy particle might leave its trace in more than a single cluster. To be able to merge events caused by such a particle in more clusters, the appropriate inter-cluster time synchronization is vital.