Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption

In a new study, the authors use seismological methods to understand the eruption of La Palma 2021. Results suggest a preparatory phase of de-stabilisation of a mushy reservoir, and a co-eruptive phase with seismicity controlled by the drainage and interplay of two reservoirs.

Bibliographic Details
Main Authors: Carmen del Fresno, Simone Cesca, Andreas Klügel, Itahiza Domínguez Cerdeña, Eduardo A. Díaz-Suárez, Torsten Dahm, Laura García-Cañada, Stavros Meletlidis, Claus Milkereit, Carla Valenzuela-Malebrán, Rubén López-Díaz, Carmen López
Format: Article
Language:English
Published: Nature Portfolio 2023-01-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-023-35953-y
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author Carmen del Fresno
Simone Cesca
Andreas Klügel
Itahiza Domínguez Cerdeña
Eduardo A. Díaz-Suárez
Torsten Dahm
Laura García-Cañada
Stavros Meletlidis
Claus Milkereit
Carla Valenzuela-Malebrán
Rubén López-Díaz
Carmen López
author_facet Carmen del Fresno
Simone Cesca
Andreas Klügel
Itahiza Domínguez Cerdeña
Eduardo A. Díaz-Suárez
Torsten Dahm
Laura García-Cañada
Stavros Meletlidis
Claus Milkereit
Carla Valenzuela-Malebrán
Rubén López-Díaz
Carmen López
author_sort Carmen del Fresno
collection DOAJ
description In a new study, the authors use seismological methods to understand the eruption of La Palma 2021. Results suggest a preparatory phase of de-stabilisation of a mushy reservoir, and a co-eruptive phase with seismicity controlled by the drainage and interplay of two reservoirs.
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spelling doaj.art-b8ac2f28c3754e78956300f7411a69152023-01-29T12:16:32ZengNature PortfolioNature Communications2041-17232023-01-0114111110.1038/s41467-023-35953-yMagmatic plumbing and dynamic evolution of the 2021 La Palma eruptionCarmen del Fresno0Simone Cesca1Andreas Klügel2Itahiza Domínguez Cerdeña3Eduardo A. Díaz-Suárez4Torsten Dahm5Laura García-Cañada6Stavros Meletlidis7Claus Milkereit8Carla Valenzuela-Malebrán9Rubén López-Díaz10Carmen López11Instituto Geográfico Nacional (IGN)GFZ German Research Centre for GeosciencesDepartment of Geosciences, University of BremenInstituto Geográfico Nacional (IGN)Instituto Geográfico Nacional (IGN)GFZ German Research Centre for GeosciencesInstituto Geográfico Nacional (IGN)Instituto Geográfico Nacional (IGN)GFZ German Research Centre for GeosciencesGFZ German Research Centre for GeosciencesInstituto Geográfico Nacional (IGN)Instituto Geográfico Nacional (IGN)In a new study, the authors use seismological methods to understand the eruption of La Palma 2021. Results suggest a preparatory phase of de-stabilisation of a mushy reservoir, and a co-eruptive phase with seismicity controlled by the drainage and interplay of two reservoirs.https://doi.org/10.1038/s41467-023-35953-y
spellingShingle Carmen del Fresno
Simone Cesca
Andreas Klügel
Itahiza Domínguez Cerdeña
Eduardo A. Díaz-Suárez
Torsten Dahm
Laura García-Cañada
Stavros Meletlidis
Claus Milkereit
Carla Valenzuela-Malebrán
Rubén López-Díaz
Carmen López
Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption
Nature Communications
title Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption
title_full Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption
title_fullStr Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption
title_full_unstemmed Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption
title_short Magmatic plumbing and dynamic evolution of the 2021 La Palma eruption
title_sort magmatic plumbing and dynamic evolution of the 2021 la palma eruption
url https://doi.org/10.1038/s41467-023-35953-y
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