Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund
The eruption of the Hunga-Tonga volcano in the South Pacific Ocean on January 15, 2022, at about 4:15 UTC, generated a violent explosion, which created atmospheric pressure disturbances in the form of Rayleigh-Lamb waves detected all over the globe. Here we discuss the observation of the Hunga-Tonga...
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Online Access: | http://hdl.handle.net/10852/101403 https://doi.org/10.1038/s41598-022-23984-2 |
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ftoslouniv:oai:www.duo.uio.no:10852/101403 2023-05-15T17:48:22+02:00 Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund ENEngelskEnglishObservation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund Abbrescia, M. Avanzini, C. Baldini, L. Ferroli, R. Baldini Batignani, G. Battaglieri, M. Boi, S. Bossini, E. Carnesecchi, F. Casula, M. Cavazza, D. Cicalò, C. Cifarelli, L. Coccetti, F. Coccia, E. Corvaglia, A. Gruttola, D. De Pasquale, S. De Galante, L. Garbini, M. Gemme, G. Gnesi, I. Gramstad, Eirik Grazzi, S. Hatzifotiadou, D. Rocca, P. La Liu, Z. Lombardo, L. Mandaglio, G. Margotti, A. Maron, G. Mazziotta, M.N. Mazzola, M. Mulliri, A. Nania, R. Noferini, F. Nozzoli, F. Ould-Saada, Farid Palmonari, F. Panareo, M. Panetta, M.P. Paoletti, R. Parvis, M. Pellegrino, C. Perasso, L. Pinazza, O. Pinto, C. Pisano, S. Riggi, F. Righini, G. 2022-12-08T08:05:25Z http://hdl.handle.net/10852/101403 https://doi.org/10.1038/s41598-022-23984-2 EN eng Nature Portfolio Abbrescia, M. Avanzini, C. Baldini, L. Ferroli, R. Baldini Batignani, G. Battaglieri, M. Boi, S. Bossini, E. Carnesecchi, F. Casula, M. Cavazza, D. Cicalò, C. Cifarelli, L. Coccetti, F. Coccia, E. Corvaglia, A. Gruttola, D. De Pasquale, S. De Galante, L. Garbini, M. Gemme, G. Gnesi, I. Gramstad, Eirik Grazzi, S. Hatzifotiadou, D. Rocca, P. La Liu, Z. Lombardo, L. Mandaglio, G. Margotti, A. Maron, G. Mazziotta, M.N. Mazzola, M. Mulliri, A. Nania, R. Noferini, F. Nozzoli, F. Ould-Saada, Farid Palmonari, F. Panareo, M. Panetta, M.P. Paoletti, R. Parvis, M. Pellegrino, C. Perasso, L. Pinazza, O. Pinto, C. Pisano, S. Riggi, F. Righini, G. Ripoli, C. Rizzi, M. Sartorelli, G. Scapparone, E. Schioppa, M. Scioli, G. Scribano, A. Selvi, M. Taiuti, M. Terreni, G. Trifirò, A. Trimarchi, M. Viola, A.P. Vistoli, C. Håland, Even Simonsen Votano, L. Williams, M.C.S. Zichichi, A. Zuyeuski, R. . Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund. Scientific Reports. 2022, 12(1) http://hdl.handle.net/10852/101403 2090406 info:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Scientific Reports&rft.volume=12&rft.spage=&rft.date=2022 Scientific Reports 12 1 0 https://doi.org/10.1038/s41598-022-23984-2 Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/ 2045-2322 Journal article Tidsskriftartikkel Peer reviewed PublishedVersion 2022 ftoslouniv https://doi.org/10.1038/s41598-022-23984-2 2023-03-15T23:36:45Z The eruption of the Hunga-Tonga volcano in the South Pacific Ocean on January 15, 2022, at about 4:15 UTC, generated a violent explosion, which created atmospheric pressure disturbances in the form of Rayleigh-Lamb waves detected all over the globe. Here we discuss the observation of the Hunga-Tonga shock-wave performed at the Ny-Ålesund Research Station on the Spitsbergen island, by the detectors of the PolarquEEEst experiment and their ancillary sensors. Online pressure data as well as the results of dedicated offline analysis are presented and discussed in details. Results include wave arrival times, wave amplitude measurements and wave velocity calculation. We observed five passages of the shock wave with a significance larger than 3 σ and an amplitude up to 1 hPa. The average propagation velocity resulted to be (308 ± 0.6) m/s. Possible effects of the atmospheric pressure variation associated with the shock-wave multiple passages on the cosmic-ray rate at ground level are also investigated. We did not find any significant evidence of this effect. Article in Journal/Newspaper Ny Ålesund Ny-Ålesund Spitsbergen Universitet i Oslo: Digitale utgivelser ved UiO (DUO) Ny-Ålesund Pacific Tonga ENVELOPE(7.990,7.990,63.065,63.065) Scientific Reports 12 1 |
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Open Polar |
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Universitet i Oslo: Digitale utgivelser ved UiO (DUO) |
op_collection_id |
ftoslouniv |
language |
English |
description |
The eruption of the Hunga-Tonga volcano in the South Pacific Ocean on January 15, 2022, at about 4:15 UTC, generated a violent explosion, which created atmospheric pressure disturbances in the form of Rayleigh-Lamb waves detected all over the globe. Here we discuss the observation of the Hunga-Tonga shock-wave performed at the Ny-Ålesund Research Station on the Spitsbergen island, by the detectors of the PolarquEEEst experiment and their ancillary sensors. Online pressure data as well as the results of dedicated offline analysis are presented and discussed in details. Results include wave arrival times, wave amplitude measurements and wave velocity calculation. We observed five passages of the shock wave with a significance larger than 3 σ and an amplitude up to 1 hPa. The average propagation velocity resulted to be (308 ± 0.6) m/s. Possible effects of the atmospheric pressure variation associated with the shock-wave multiple passages on the cosmic-ray rate at ground level are also investigated. We did not find any significant evidence of this effect. |
format |
Article in Journal/Newspaper |
author |
Abbrescia, M. Avanzini, C. Baldini, L. Ferroli, R. Baldini Batignani, G. Battaglieri, M. Boi, S. Bossini, E. Carnesecchi, F. Casula, M. Cavazza, D. Cicalò, C. Cifarelli, L. Coccetti, F. Coccia, E. Corvaglia, A. Gruttola, D. De Pasquale, S. De Galante, L. Garbini, M. Gemme, G. Gnesi, I. Gramstad, Eirik Grazzi, S. Hatzifotiadou, D. Rocca, P. La Liu, Z. Lombardo, L. Mandaglio, G. Margotti, A. Maron, G. Mazziotta, M.N. Mazzola, M. Mulliri, A. Nania, R. Noferini, F. Nozzoli, F. Ould-Saada, Farid Palmonari, F. Panareo, M. Panetta, M.P. Paoletti, R. Parvis, M. Pellegrino, C. Perasso, L. Pinazza, O. Pinto, C. Pisano, S. Riggi, F. Righini, G. |
spellingShingle |
Abbrescia, M. Avanzini, C. Baldini, L. Ferroli, R. Baldini Batignani, G. Battaglieri, M. Boi, S. Bossini, E. Carnesecchi, F. Casula, M. Cavazza, D. Cicalò, C. Cifarelli, L. Coccetti, F. Coccia, E. Corvaglia, A. Gruttola, D. De Pasquale, S. De Galante, L. Garbini, M. Gemme, G. Gnesi, I. Gramstad, Eirik Grazzi, S. Hatzifotiadou, D. Rocca, P. La Liu, Z. Lombardo, L. Mandaglio, G. Margotti, A. Maron, G. Mazziotta, M.N. Mazzola, M. Mulliri, A. Nania, R. Noferini, F. Nozzoli, F. Ould-Saada, Farid Palmonari, F. Panareo, M. Panetta, M.P. Paoletti, R. Parvis, M. Pellegrino, C. Perasso, L. Pinazza, O. Pinto, C. Pisano, S. Riggi, F. Righini, G. Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund |
author_facet |
Abbrescia, M. Avanzini, C. Baldini, L. Ferroli, R. Baldini Batignani, G. Battaglieri, M. Boi, S. Bossini, E. Carnesecchi, F. Casula, M. Cavazza, D. Cicalò, C. Cifarelli, L. Coccetti, F. Coccia, E. Corvaglia, A. Gruttola, D. De Pasquale, S. De Galante, L. Garbini, M. Gemme, G. Gnesi, I. Gramstad, Eirik Grazzi, S. Hatzifotiadou, D. Rocca, P. La Liu, Z. Lombardo, L. Mandaglio, G. Margotti, A. Maron, G. Mazziotta, M.N. Mazzola, M. Mulliri, A. Nania, R. Noferini, F. Nozzoli, F. Ould-Saada, Farid Palmonari, F. Panareo, M. Panetta, M.P. Paoletti, R. Parvis, M. Pellegrino, C. Perasso, L. Pinazza, O. Pinto, C. Pisano, S. Riggi, F. Righini, G. |
author_sort |
Abbrescia, M. |
title |
Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund |
title_short |
Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund |
title_full |
Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund |
title_fullStr |
Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund |
title_full_unstemmed |
Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund |
title_sort |
observation of rayleigh-lamb waves generated by the 2022 hunga-tonga volcanic eruption with the pola detectors at ny-ålesund |
publisher |
Nature Portfolio |
publishDate |
2022 |
url |
http://hdl.handle.net/10852/101403 https://doi.org/10.1038/s41598-022-23984-2 |
long_lat |
ENVELOPE(7.990,7.990,63.065,63.065) |
geographic |
Ny-Ålesund Pacific Tonga |
geographic_facet |
Ny-Ålesund Pacific Tonga |
genre |
Ny Ålesund Ny-Ålesund Spitsbergen |
genre_facet |
Ny Ålesund Ny-Ålesund Spitsbergen |
op_source |
2045-2322 |
op_relation |
Abbrescia, M. Avanzini, C. Baldini, L. Ferroli, R. Baldini Batignani, G. Battaglieri, M. Boi, S. Bossini, E. Carnesecchi, F. Casula, M. Cavazza, D. Cicalò, C. Cifarelli, L. Coccetti, F. Coccia, E. Corvaglia, A. Gruttola, D. De Pasquale, S. De Galante, L. Garbini, M. Gemme, G. Gnesi, I. Gramstad, Eirik Grazzi, S. Hatzifotiadou, D. Rocca, P. La Liu, Z. Lombardo, L. Mandaglio, G. Margotti, A. Maron, G. Mazziotta, M.N. Mazzola, M. Mulliri, A. Nania, R. Noferini, F. Nozzoli, F. Ould-Saada, Farid Palmonari, F. Panareo, M. Panetta, M.P. Paoletti, R. Parvis, M. Pellegrino, C. Perasso, L. Pinazza, O. Pinto, C. Pisano, S. Riggi, F. Righini, G. Ripoli, C. Rizzi, M. Sartorelli, G. Scapparone, E. Schioppa, M. Scioli, G. Scribano, A. Selvi, M. Taiuti, M. Terreni, G. Trifirò, A. Trimarchi, M. Viola, A.P. Vistoli, C. Håland, Even Simonsen Votano, L. Williams, M.C.S. Zichichi, A. Zuyeuski, R. . Observation of Rayleigh-Lamb waves generated by the 2022 Hunga-Tonga volcanic eruption with the POLA detectors at Ny-Ålesund. Scientific Reports. 2022, 12(1) http://hdl.handle.net/10852/101403 2090406 info:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Scientific Reports&rft.volume=12&rft.spage=&rft.date=2022 Scientific Reports 12 1 0 https://doi.org/10.1038/s41598-022-23984-2 |
op_rights |
Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/ |
op_doi |
https://doi.org/10.1038/s41598-022-23984-2 |
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Scientific Reports |
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12 |
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