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  Studying bioluminescence flashes with the ANTARES deep-sea neutrino telescope

Reeb, N., Hutschenreuter, S., Zehetner, P., Ensslin, T., Albert, A., Alves, S., et al. (2023). Studying bioluminescence flashes with the ANTARES deep-sea neutrino telescope. Limnology and Oceanography: Methods, 21(11), 734-760. doi:10.1002/lom3.10578.

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Reeb, Nico1, Author           
Hutschenreuter, Sebastian1, Author           
Zehetner, Philipp1, Author           
Ensslin, Torsten1, Author           
Albert, A., Author
Alves, S., Author
André, M., Author
Anghinolfi, M., Author
Anton, G., Author
Ardid, M., Author
Aubert, J.-J., Author
Aublin, J., Author
Baret, B., Author
Basa, S., Author
Belhorma, B., Author
Bendahman, M., Author
Bertin, V., Author
Biagi, S., Author
Bissinger, M., Author
Boumaaza, J., Author
Bouta, M., AuthorBouwhuis, M. C., AuthorBrânzas, H., AuthorBruijn, R., AuthorBrunner, J., AuthorBusto, J., AuthorCaiffi, B., AuthorCapone, A., AuthorCaramete, L., AuthorCarr, J., AuthorCarretero, V., AuthorCelli, S., AuthorChabab, M., AuthorChau, T. N., AuthorMoursli, R. Cherkaoui El, AuthorChiarusi, T., AuthorCircella, M., AuthorColeiro, A., AuthorColomer-Molla, M., AuthorConiglione, R., AuthorCoyle, P., AuthorCreusot, A., AuthorDíaz, A. F., Authorde Wasseige, G., AuthorDeschamps, A., AuthorDistefano, C., AuthorPalma, I. Di, AuthorDomi, A., AuthorDonzaud, C., AuthorDornic, D., AuthorDrouhin, D., AuthorEberl, T., Authorvan Eeden, T., AuthorKhayati, N. El, AuthorEnzenhöfer, A., AuthorFermani, P., AuthorFerrara, G., AuthorFilippini, F., AuthorFusco, L., AuthorGatelet, Y., AuthorGay, P., AuthorGlotin, H., AuthorGozzini, R., AuthorRuiz, R. Gracia, AuthorGraf, K., AuthorGuidi, C., AuthorHallmann, S., Authorvan Haren, H., AuthorHeijboer, A. J., AuthorHello, Y., AuthorHernandez-Rey, J. J., AuthorHößl, J., AuthorHofestädt, J., AuthorHuang, F., AuthorIlluminati, G., AuthorJames, C. W., AuthorJisse-Jung, B., Authorde Jong, M., Authorde Jong, P., AuthorJongen, M., AuthorKadler, M., AuthorKalekin, O., AuthorKatz, U., AuthorKhan-Chowdhury, N. R., AuthorKouchner, A., AuthorKreykenbohm, I., AuthorKulikovskiy, V., AuthorLahmann, R., AuthorLe Breton, R., AuthorLefèvre, D., AuthorLeonora, E., AuthorLevi, G., AuthorLincetto, M., AuthorLopez-Coto, D., AuthorLoucatos, S., AuthorMaderer, L., AuthorManczak, J., AuthorMarcelin, M., AuthorMargiotta, A., AuthorMarinelli, A., AuthorMartínez-Mora, J. A., AuthorMelis, K., AuthorMigliozzi, P., AuthorMoussa, A., AuthorMuller, R., AuthorNauta, L., AuthorNavas, S., AuthorNezri, E., AuthorFearraigh, B. Ó, AuthorOrganokov, M., AuthorPavala¸s, G. E., AuthorPellegrino, C., AuthorPerrin-Terrin, M., AuthorPiattelli, P., AuthorPieterse, C., AuthorPoirè, C., AuthorPopa, V., AuthorPradier, T., AuthorRandazzo, N., AuthorReck, S., AuthorRiccobene, G., AuthorRomanov, A., AuthorSanchez-Losa, A., AuthorGreus, F. Salesa, AuthorSamtleben, D. F. E., AuthorSanguineti, M., AuthorSapienza, P., AuthorSchnabel, J., AuthorSchumann, J., AuthorSchüssler, F., AuthorSpurio, M., AuthorStolarczyk, Th., AuthorTaiuti, M., AuthorTayalati, Y., AuthorTingay, S.J., AuthorVallage, B., AuthorElewyck, V. Van, AuthorVersari, F., AuthorViola, S., AuthorVivolo, D., AuthorWilms, J., AuthorZavatarelli, S., AuthorZegarelli, A., AuthorZornoza, J. D., AuthorZúñiga, J., Author more..
Affiliations:
1Computational Structure Formation, MPI for Astrophysics, Max Planck Society, ou_2205642              

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 Abstract: We develop a novel technique to exploit the extensive data sets provided by underwater neutrino telescopes to gain information on bioluminescence in the deep sea. The passive nature of the telescopes gives us the unique opportunity to infer information on bioluminescent organisms without actively interfering with them. We propose a statistical method that allows us to reconstruct the light emission of individual organisms, as well as their location and movement. A mathematical model is built to describe the measurement process of underwater neutrino telescopes and the signal generation of the biological organisms. The Metric Gaussian Variational Inference algorithm is used to reconstruct the model parameters using photon counts recorded by photomultiplier tubes. We apply this method to synthetic data sets and data collected by the ANTARES neutrino telescope. The telescope is located 40 km off the French coast and fixed to the sea floor at a depth of 2475 m. The runs with synthetic data reveal that we can model the emitted bioluminescent flashes of the organisms. Furthermore, we find that the spatial resolution of the localization of light sources highly depends on the configuration of the telescope. Precise measurements of the efficiencies of the detectors and the attenuation length of the water are crucial to reconstruct the light emission. Finally, the application to ANTARES data reveals the first localizations of bioluminescent organisms using neutrino telescope data.

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 Dates: 2023-10-11
 Publication Status: Published online
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1002/lom3.10578
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Title: Limnology and Oceanography: Methods
  Other : Limnol. Oceanogr.: Methods
Source Genre: Journal
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Publ. Info: Waco, Tex. : American Society of Limnology and Oceanography
Pages: - Volume / Issue: 21 (11) Sequence Number: - Start / End Page: 734 - 760 Identifier: ISSN: 1541-5856
CoNE: https://pure.mpg.de/cone/journals/resource/991042728183802