Saved in:
Bibliographic Details
Main Authors: Albert, A., Alves, S., André, M., Ardid, M., Ardid, S., Aubert, J. -J., Aublin, J., Baret, B., Basa, S., Becherini, Y., Belhorma, B., Bendahman, M., Benfenati, F., Bertin, V., Biagi, S., Boumaaza, J., Bouta, M., Bouwhuis, M. C., Brânzaş, H., Bruijn, R., Brunner, J., Busto, J., Caiffi, B., Calvo, D., Campion, S., Capone, A., Carenini, F., Carr, J., Carretero, V., Celli, S., Cerisy, L., Chabab, M., Moursli, R. Cherkaoui El, Chiarusi, T., Circella, M., Coelho, J. A. B., Coleiro, A., Coniglione, R., Coyle, P., Creusot, A., Díaz, A. F., De Martino, B., Distefano, C., Di Palma, I., Donzaud, C., Dornic, D., Drouhin, D., Eberl, T., Eddymaoui, A., van Eeden, T., van Eijk, D., Hedri, S. El, Khayati, N. El, Enzenhöfer, A., Fermani, P., Ferrara, G., Filippini, F., Fusco, L., Gagliardini, S., García, J., Oliver, C. Gatius, Gay, P., Geißelbrecht, N., Glotin, H., Gozzini, R., Ruiz, R. Gracia, Graf, K., Guidi, C., Haegel, L., van Haren, H., Heijboer, A. J., Hello, Y., Hennig, L., Hernández-Rey, J. J., Hößl, J., Huang, F., Illuminati, G., Jisse-Jung, B., de Jong, M., de Jong, P., Kadler, M., Kalekin, O., Katz, U., Kouchner, A., Kreykenbohm, I., Kulikovskiy, V., Lahmann, R., Lamoureux, M., Lazo, A., Lefèvre, D., Leonora, E., Levi, G., Stum, S. Le, Loucatos, S., Manczak, J., Marcelin, M., Margiotta, A., Marinelli, A., Martínez-Mora, J. A., Migliozzi, P., Moussa, A., Muller, R., Navas, S., Nezri, E., Fearraigh, B. Ó, Oukacha, E., Păun, A., Păvălaş, G. E., Peña-Martínez, S., Perrin-Terrin, M., Piattelli, P., Poirè, C., Popa, V., Pradier, T., Randazzo, N., Real, D., Riccobene, G., Romanov, A., Sánchez-Losa, A., Saina, A., Greus, F. Salesa, Samtleben, D. F. E., Sanguineti, M., Sapienza, P., Schüssler, F., Seneca, J., Spurio, M., Stolarczyk, Th., Taiuti, M., Tayalati, Y., Vallage, B., Vannoye, G., Van Elewyck, V., Viola, S., Vivolo, D., Wilms, J., Zavatarelli, S., Zegarelli, A., Zornoza, J. D., Zúñiga, J.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2405.07230
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929662275354624
author Albert, A.
Alves, S.
André, M.
Ardid, M.
Ardid, S.
Aubert, J. -J.
Aublin, J.
Baret, B.
Basa, S.
Becherini, Y.
Belhorma, B.
Bendahman, M.
Benfenati, F.
Bertin, V.
Biagi, S.
Boumaaza, J.
Bouta, M.
Bouwhuis, M. C.
Brânzaş, H.
Bruijn, R.
Brunner, J.
Busto, J.
Caiffi, B.
Calvo, D.
Campion, S.
Capone, A.
Carenini, F.
Carr, J.
Carretero, V.
Celli, S.
Cerisy, L.
Chabab, M.
Moursli, R. Cherkaoui El
Chiarusi, T.
Circella, M.
Coelho, J. A. B.
Coleiro, A.
Coniglione, R.
Coyle, P.
Creusot, A.
Díaz, A. F.
De Martino, B.
Distefano, C.
Di Palma, I.
Donzaud, C.
Dornic, D.
Drouhin, D.
Eberl, T.
Eddymaoui, A.
van Eeden, T.
van Eijk, D.
Hedri, S. El
Khayati, N. El
Enzenhöfer, A.
Fermani, P.
Ferrara, G.
Filippini, F.
Fusco, L.
Gagliardini, S.
García, J.
Oliver, C. Gatius
Gay, P.
Geißelbrecht, N.
Glotin, H.
Gozzini, R.
Ruiz, R. Gracia
Graf, K.
Guidi, C.
Haegel, L.
van Haren, H.
Heijboer, A. J.
Hello, Y.
Hennig, L.
Hernández-Rey, J. J.
Hößl, J.
Huang, F.
Illuminati, G.
Jisse-Jung, B.
de Jong, M.
de Jong, P.
Kadler, M.
Kalekin, O.
Katz, U.
Kouchner, A.
Kreykenbohm, I.
Kulikovskiy, V.
Lahmann, R.
Lamoureux, M.
Lazo, A.
Lefèvre, D.
Leonora, E.
Levi, G.
Stum, S. Le
Loucatos, S.
Manczak, J.
Marcelin, M.
Margiotta, A.
Marinelli, A.
Martínez-Mora, J. A.
Migliozzi, P.
Moussa, A.
Muller, R.
Navas, S.
Nezri, E.
Fearraigh, B. Ó
Oukacha, E.
Păun, A.
Păvălaş, G. E.
Peña-Martínez, S.
Perrin-Terrin, M.
Piattelli, P.
Poirè, C.
Popa, V.
Pradier, T.
Randazzo, N.
Real, D.
Riccobene, G.
Romanov, A.
Sánchez-Losa, A.
Saina, A.
Greus, F. Salesa
Samtleben, D. F. E.
Sanguineti, M.
Sapienza, P.
Schüssler, F.
Seneca, J.
Spurio, M.
Stolarczyk, Th.
Taiuti, M.
Tayalati, Y.
Vallage, B.
Vannoye, G.
Van Elewyck, V.
Viola, S.
Vivolo, D.
Wilms, J.
Zavatarelli, S.
Zegarelli, A.
Zornoza, J. D.
Zúñiga, J.
author_facet Albert, A.
Alves, S.
André, M.
Ardid, M.
Ardid, S.
Aubert, J. -J.
Aublin, J.
Baret, B.
Basa, S.
Becherini, Y.
Belhorma, B.
Bendahman, M.
Benfenati, F.
Bertin, V.
Biagi, S.
Boumaaza, J.
Bouta, M.
Bouwhuis, M. C.
Brânzaş, H.
Bruijn, R.
Brunner, J.
Busto, J.
Caiffi, B.
Calvo, D.
Campion, S.
Capone, A.
Carenini, F.
Carr, J.
Carretero, V.
Celli, S.
Cerisy, L.
Chabab, M.
Moursli, R. Cherkaoui El
Chiarusi, T.
Circella, M.
Coelho, J. A. B.
Coleiro, A.
Coniglione, R.
Coyle, P.
Creusot, A.
Díaz, A. F.
De Martino, B.
Distefano, C.
Di Palma, I.
Donzaud, C.
Dornic, D.
Drouhin, D.
Eberl, T.
Eddymaoui, A.
van Eeden, T.
van Eijk, D.
Hedri, S. El
Khayati, N. El
Enzenhöfer, A.
Fermani, P.
Ferrara, G.
Filippini, F.
Fusco, L.
Gagliardini, S.
García, J.
Oliver, C. Gatius
Gay, P.
Geißelbrecht, N.
Glotin, H.
Gozzini, R.
Ruiz, R. Gracia
Graf, K.
Guidi, C.
Haegel, L.
van Haren, H.
Heijboer, A. J.
Hello, Y.
Hennig, L.
Hernández-Rey, J. J.
Hößl, J.
Huang, F.
Illuminati, G.
Jisse-Jung, B.
de Jong, M.
de Jong, P.
Kadler, M.
Kalekin, O.
Katz, U.
Kouchner, A.
Kreykenbohm, I.
Kulikovskiy, V.
Lahmann, R.
Lamoureux, M.
Lazo, A.
Lefèvre, D.
Leonora, E.
Levi, G.
Stum, S. Le
Loucatos, S.
Manczak, J.
Marcelin, M.
Margiotta, A.
Marinelli, A.
Martínez-Mora, J. A.
Migliozzi, P.
Moussa, A.
Muller, R.
Navas, S.
Nezri, E.
Fearraigh, B. Ó
Oukacha, E.
Păun, A.
Păvălaş, G. E.
Peña-Martínez, S.
Perrin-Terrin, M.
Piattelli, P.
Poirè, C.
Popa, V.
Pradier, T.
Randazzo, N.
Real, D.
Riccobene, G.
Romanov, A.
Sánchez-Losa, A.
Saina, A.
Greus, F. Salesa
Samtleben, D. F. E.
Sanguineti, M.
Sapienza, P.
Schüssler, F.
Seneca, J.
Spurio, M.
Stolarczyk, Th.
Taiuti, M.
Tayalati, Y.
Vallage, B.
Vannoye, G.
Van Elewyck, V.
Viola, S.
Vivolo, D.
Wilms, J.
Zavatarelli, S.
Zegarelli, A.
Zornoza, J. D.
Zúñiga, J.
contents Position calibration in the deep sea is typically done by means of acoustic multilateration using three or more acoustic emitters installed at known positions. Rather than using hydrophones as receivers that are exposed to the ambient pressure, the sound signals can be coupled to piezo ceramics glued to the inside of existing containers for electronics or measuring instruments of a deep sea infrastructure. The ANTARES neutrino telescope operated from 2006 until 2022 in the Mediterranean Sea at a depth exceeding 2000m. It comprised nearly 900 glass spheres with 432mm diameter and 15mm thickness, equipped with photomultiplier tubes to detect Cherenkov light from tracks of charged elementary particles. In an experimental setup within ANTARES, piezo sensors have been glued to the inside of such - otherwise empty - glass spheres. These sensors recorded signals from acoustic emitters with frequencies from 46545 to 60235Hz. Two waves propagating through the glass sphere are found as a result of the excitation by the waves in the water. These can be qualitatively associated with symmetric and asymmetric Lamb-like waves of zeroth order: a fast (early) one with $v_e \approx 5$mm/$μ$s and a slow (late) one with $v_\ell \approx 2$mm/$μ$s. Taking these findings into account improves the accuracy of the position calibration. The results can be transferred to the KM3NeT neutrino telescope, currently under construction at multiple sites in the Mediterranean Sea, for which the concept of piezo sensors glued to the inside of glass spheres has been adapted for monitoring the positions of the photomultiplier tubes.
format Preprint
id arxiv_https___arxiv_org_abs_2405_07230
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Acoustic Positioning for Deep Sea Neutrino Telescopes with a System of Piezo Sensors Integrated into Glass Spheres
Albert, A.
Alves, S.
André, M.
Ardid, M.
Ardid, S.
Aubert, J. -J.
Aublin, J.
Baret, B.
Basa, S.
Becherini, Y.
Belhorma, B.
Bendahman, M.
Benfenati, F.
Bertin, V.
Biagi, S.
Boumaaza, J.
Bouta, M.
Bouwhuis, M. C.
Brânzaş, H.
Bruijn, R.
Brunner, J.
Busto, J.
Caiffi, B.
Calvo, D.
Campion, S.
Capone, A.
Carenini, F.
Carr, J.
Carretero, V.
Celli, S.
Cerisy, L.
Chabab, M.
Moursli, R. Cherkaoui El
Chiarusi, T.
Circella, M.
Coelho, J. A. B.
Coleiro, A.
Coniglione, R.
Coyle, P.
Creusot, A.
Díaz, A. F.
De Martino, B.
Distefano, C.
Di Palma, I.
Donzaud, C.
Dornic, D.
Drouhin, D.
Eberl, T.
Eddymaoui, A.
van Eeden, T.
van Eijk, D.
Hedri, S. El
Khayati, N. El
Enzenhöfer, A.
Fermani, P.
Ferrara, G.
Filippini, F.
Fusco, L.
Gagliardini, S.
García, J.
Oliver, C. Gatius
Gay, P.
Geißelbrecht, N.
Glotin, H.
Gozzini, R.
Ruiz, R. Gracia
Graf, K.
Guidi, C.
Haegel, L.
van Haren, H.
Heijboer, A. J.
Hello, Y.
Hennig, L.
Hernández-Rey, J. J.
Hößl, J.
Huang, F.
Illuminati, G.
Jisse-Jung, B.
de Jong, M.
de Jong, P.
Kadler, M.
Kalekin, O.
Katz, U.
Kouchner, A.
Kreykenbohm, I.
Kulikovskiy, V.
Lahmann, R.
Lamoureux, M.
Lazo, A.
Lefèvre, D.
Leonora, E.
Levi, G.
Stum, S. Le
Loucatos, S.
Manczak, J.
Marcelin, M.
Margiotta, A.
Marinelli, A.
Martínez-Mora, J. A.
Migliozzi, P.
Moussa, A.
Muller, R.
Navas, S.
Nezri, E.
Fearraigh, B. Ó
Oukacha, E.
Păun, A.
Păvălaş, G. E.
Peña-Martínez, S.
Perrin-Terrin, M.
Piattelli, P.
Poirè, C.
Popa, V.
Pradier, T.
Randazzo, N.
Real, D.
Riccobene, G.
Romanov, A.
Sánchez-Losa, A.
Saina, A.
Greus, F. Salesa
Samtleben, D. F. E.
Sanguineti, M.
Sapienza, P.
Schüssler, F.
Seneca, J.
Spurio, M.
Stolarczyk, Th.
Taiuti, M.
Tayalati, Y.
Vallage, B.
Vannoye, G.
Van Elewyck, V.
Viola, S.
Vivolo, D.
Wilms, J.
Zavatarelli, S.
Zegarelli, A.
Zornoza, J. D.
Zúñiga, J.
Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
Position calibration in the deep sea is typically done by means of acoustic multilateration using three or more acoustic emitters installed at known positions. Rather than using hydrophones as receivers that are exposed to the ambient pressure, the sound signals can be coupled to piezo ceramics glued to the inside of existing containers for electronics or measuring instruments of a deep sea infrastructure. The ANTARES neutrino telescope operated from 2006 until 2022 in the Mediterranean Sea at a depth exceeding 2000m. It comprised nearly 900 glass spheres with 432mm diameter and 15mm thickness, equipped with photomultiplier tubes to detect Cherenkov light from tracks of charged elementary particles. In an experimental setup within ANTARES, piezo sensors have been glued to the inside of such - otherwise empty - glass spheres. These sensors recorded signals from acoustic emitters with frequencies from 46545 to 60235Hz. Two waves propagating through the glass sphere are found as a result of the excitation by the waves in the water. These can be qualitatively associated with symmetric and asymmetric Lamb-like waves of zeroth order: a fast (early) one with $v_e \approx 5$mm/$μ$s and a slow (late) one with $v_\ell \approx 2$mm/$μ$s. Taking these findings into account improves the accuracy of the position calibration. The results can be transferred to the KM3NeT neutrino telescope, currently under construction at multiple sites in the Mediterranean Sea, for which the concept of piezo sensors glued to the inside of glass spheres has been adapted for monitoring the positions of the photomultiplier tubes.
title Acoustic Positioning for Deep Sea Neutrino Telescopes with a System of Piezo Sensors Integrated into Glass Spheres
topic Instrumentation and Methods for Astrophysics
Instrumentation and Detectors
url https://arxiv.org/abs/2405.07230