Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula

Bahia Esperanza, constituting the NE tip of the Antarctic Peninsula, is made up of Paleozoic clastic sedimentary rocks overlain by a Jurassic volcano-sedimentary series and intruded by Cretaceous gabbros and diorites. The area is located along the southern part of the Pacific Margin magnetic anomaly...

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Published in:Tectonophysics
Main Authors: Galindo Zaldívar, Jesús, Ruiz Constán, Ana, Pedrera Parias, Antonio, Ghidella, Marta, Montes Santiago, Manuel Jesús, Nozal Martín, Francisco de Borja, Rodríguez Fernández, Luis Roberto
Format: Other/Unknown Material
Language:English
Published: Elsevier 2020
Subjects:
Online Access:https://hdl.handle.net/20.500.12468/494
https://doi.org/10.1016/j.tecto.2012.09.008
id ftcsic:oai:digital.csic.es:20.500.12468/494
record_format openpolar
spelling ftcsic:oai:digital.csic.es:20.500.12468/494 2023-05-15T13:55:11+02:00 Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula Galindo Zaldívar, Jesús Ruiz Constán, Ana Pedrera Parias, Antonio Ghidella, Marta Montes Santiago, Manuel Jesús Nozal Martín, Francisco de Borja Rodríguez Fernández, Luis Roberto Bahía Esperanza, Antártida 2020-10-14T10:23:37Z https://hdl.handle.net/20.500.12468/494 https://doi.org/10.1016/j.tecto.2012.09.008 en eng Elsevier #PLACEHOLDER_PARENT_METADATA_VALUE# POL2006-13836-C03-01 CSD2006-00041 CTM2011-30241-C02-02 CGL2010-21048 P09-RNM-5388 RNM148 https://reader.elsevier.com/reader/sd/pii/S0040195112005665?token=F6C0EA1BC9712692F6F48DC05C4FD9263B91624DA222B0F402377A7490E50C00EEA5ED07375701B97AF821E8B191545D Tectonophysics, vol.585, 2013, 68-76 http://hdl.handle.net/20.500.12468/494 https://doi.org/10.1016/j.tecto.2012.09.008 open basic and intermediate intrusive rocks Pacific Margin Anomaly field magnetic observations glacier erosion Bahía Esperanza Antártida Postprint 2020 ftcsic https://doi.org/20.500.12468/494 https://doi.org/10.1016/j.tecto.2012.09.008 2022-08-23T23:39:35Z Bahia Esperanza, constituting the NE tip of the Antarctic Peninsula, is made up of Paleozoic clastic sedimentary rocks overlain by a Jurassic volcano-sedimentary series and intruded by Cretaceous gabbros and diorites. The area is located along the southern part of the Pacific Margin magnetic anomaly belt. Field magnetic researches during February 2010 contribute to determining the deep geometry of the intermediate and basic intrusive rocks. Moreover, the new field data help constrain the regional Pacific Margin Anomaly, characterized up to now only by aeromagnetic and marine data. Field magnetic susceptibility measurements of intrusive intermediate and basic rocks, responsible for magnetic anomalies, ranges from 0.5 × 10− 3 SI in diorites to values between 0.75 × 10− 3 SI and 1.3 × 10− 3 SI in gabbros. In addition, a significant remanent magnetism should also have contributed to the anomalies. The regional magnetic anomaly is characterized by a westward increase from 100 nT up to 750 nT, associated with large intrusive diorite bodies. They probably underlie most of the western slopes of Mount Flora. Gabbros in the Nobby Nunatak determine local residual rough anomalies that extend northwards and westwards, pointing to the irregular geometry of the top of the basic rocks bodies below the Pirámide Peak Glacier. However, the southern and eastern boundaries with the Buenos Aires Glacier are sharp related to deep glacier incision. As a result of the glacier dynamics, magnetic anomalies are also detected north of the Nobby Nunatak due to the extension of the anomalous body and the presence of gabbro blocks in the moraines. The Bahia Esperanza region is a key area where onshore field geological and magnetic research allows us to constrain the shape of the crustal igneous intrusions and the basement glacier geometry, providing accurate data that complete regional aeromagnetic research Departamento de Geodinámica, Universidad de Granada, España Instituto Andaluz de Ciencias de la Tierra, Consejo Superior de ... Other/Unknown Material Antarc* Antarctic Antarctic Peninsula Antártida Digital.CSIC (Spanish National Research Council) Antarctic The Antarctic Antarctic Peninsula Pacific Esperanza ENVELOPE(-56.983,-56.983,-63.400,-63.400) Nobby ENVELOPE(-34.633,-34.633,-55.033,-55.033) bahía Esperanza ENVELOPE(-57.000,-57.000,-63.400,-63.400) Mount Flora ENVELOPE(-57.008,-57.008,-63.417,-63.417) Basement Glacier ENVELOPE(-137.237,-137.237,59.349,59.349) Nobby Nunatak ENVELOPE(-56.997,-56.997,-63.419,-63.419) Tectonophysics 585 68 76
institution Open Polar
collection Digital.CSIC (Spanish National Research Council)
op_collection_id ftcsic
language English
topic basic and intermediate intrusive rocks
Pacific Margin Anomaly
field magnetic observations
glacier erosion
Bahía Esperanza
Antártida
spellingShingle basic and intermediate intrusive rocks
Pacific Margin Anomaly
field magnetic observations
glacier erosion
Bahía Esperanza
Antártida
Galindo Zaldívar, Jesús
Ruiz Constán, Ana
Pedrera Parias, Antonio
Ghidella, Marta
Montes Santiago, Manuel Jesús
Nozal Martín, Francisco de Borja
Rodríguez Fernández, Luis Roberto
Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula
topic_facet basic and intermediate intrusive rocks
Pacific Margin Anomaly
field magnetic observations
glacier erosion
Bahía Esperanza
Antártida
description Bahia Esperanza, constituting the NE tip of the Antarctic Peninsula, is made up of Paleozoic clastic sedimentary rocks overlain by a Jurassic volcano-sedimentary series and intruded by Cretaceous gabbros and diorites. The area is located along the southern part of the Pacific Margin magnetic anomaly belt. Field magnetic researches during February 2010 contribute to determining the deep geometry of the intermediate and basic intrusive rocks. Moreover, the new field data help constrain the regional Pacific Margin Anomaly, characterized up to now only by aeromagnetic and marine data. Field magnetic susceptibility measurements of intrusive intermediate and basic rocks, responsible for magnetic anomalies, ranges from 0.5 × 10− 3 SI in diorites to values between 0.75 × 10− 3 SI and 1.3 × 10− 3 SI in gabbros. In addition, a significant remanent magnetism should also have contributed to the anomalies. The regional magnetic anomaly is characterized by a westward increase from 100 nT up to 750 nT, associated with large intrusive diorite bodies. They probably underlie most of the western slopes of Mount Flora. Gabbros in the Nobby Nunatak determine local residual rough anomalies that extend northwards and westwards, pointing to the irregular geometry of the top of the basic rocks bodies below the Pirámide Peak Glacier. However, the southern and eastern boundaries with the Buenos Aires Glacier are sharp related to deep glacier incision. As a result of the glacier dynamics, magnetic anomalies are also detected north of the Nobby Nunatak due to the extension of the anomalous body and the presence of gabbro blocks in the moraines. The Bahia Esperanza region is a key area where onshore field geological and magnetic research allows us to constrain the shape of the crustal igneous intrusions and the basement glacier geometry, providing accurate data that complete regional aeromagnetic research Departamento de Geodinámica, Universidad de Granada, España Instituto Andaluz de Ciencias de la Tierra, Consejo Superior de ...
format Other/Unknown Material
author Galindo Zaldívar, Jesús
Ruiz Constán, Ana
Pedrera Parias, Antonio
Ghidella, Marta
Montes Santiago, Manuel Jesús
Nozal Martín, Francisco de Borja
Rodríguez Fernández, Luis Roberto
author_facet Galindo Zaldívar, Jesús
Ruiz Constán, Ana
Pedrera Parias, Antonio
Ghidella, Marta
Montes Santiago, Manuel Jesús
Nozal Martín, Francisco de Borja
Rodríguez Fernández, Luis Roberto
author_sort Galindo Zaldívar, Jesús
title Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula
title_short Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula
title_full Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula
title_fullStr Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula
title_full_unstemmed Magnetic anomalies in Bahia Esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern Antarctic Peninsula
title_sort magnetic anomalies in bahia esperanza: a window of magmatic arc intrusions and glacier erosion over the northeastern antarctic peninsula
publisher Elsevier
publishDate 2020
url https://hdl.handle.net/20.500.12468/494
https://doi.org/10.1016/j.tecto.2012.09.008
op_coverage Bahía Esperanza, Antártida
long_lat ENVELOPE(-56.983,-56.983,-63.400,-63.400)
ENVELOPE(-34.633,-34.633,-55.033,-55.033)
ENVELOPE(-57.000,-57.000,-63.400,-63.400)
ENVELOPE(-57.008,-57.008,-63.417,-63.417)
ENVELOPE(-137.237,-137.237,59.349,59.349)
ENVELOPE(-56.997,-56.997,-63.419,-63.419)
geographic Antarctic
The Antarctic
Antarctic Peninsula
Pacific
Esperanza
Nobby
bahía Esperanza
Mount Flora
Basement Glacier
Nobby Nunatak
geographic_facet Antarctic
The Antarctic
Antarctic Peninsula
Pacific
Esperanza
Nobby
bahía Esperanza
Mount Flora
Basement Glacier
Nobby Nunatak
genre Antarc*
Antarctic
Antarctic Peninsula
Antártida
genre_facet Antarc*
Antarctic
Antarctic Peninsula
Antártida
op_relation #PLACEHOLDER_PARENT_METADATA_VALUE#
POL2006-13836-C03-01
CSD2006-00041
CTM2011-30241-C02-02
CGL2010-21048
P09-RNM-5388
RNM148
https://reader.elsevier.com/reader/sd/pii/S0040195112005665?token=F6C0EA1BC9712692F6F48DC05C4FD9263B91624DA222B0F402377A7490E50C00EEA5ED07375701B97AF821E8B191545D
Tectonophysics, vol.585, 2013, 68-76
http://hdl.handle.net/20.500.12468/494
https://doi.org/10.1016/j.tecto.2012.09.008
op_rights open
op_doi https://doi.org/20.500.12468/494
https://doi.org/10.1016/j.tecto.2012.09.008
container_title Tectonophysics
container_volume 585
container_start_page 68
op_container_end_page 76
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