40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System

Fault-generated pseudotachylytes are the product of frictional melting during high-velocity slip associated with coseismic faulting. 40Ar–39Ar dating of pseudotachylytes represents a powerful tool to directly determine the age of brittle faulting which is otherwise dated only indirectly. However, th...

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Main Authors: DI VINCENZO G., ROCCHI S., ROSSETTI F., STORTI, Fabrizio
Other Authors: DI VINCENZO, G., Rocchi, S., Rossetti, F., Storti, Fabrizio
Format: Article in Journal/Newspaper
Language:unknown
Published: 2004
Subjects:
Online Access:http://hdl.handle.net/11381/2388843
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spelling ftunivparmairis:oai:air.unipr.it:11381/2388843 2024-04-21T07:52:07+00:00 40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System DI VINCENZO G. ROCCHI S. ROSSETTI F. STORTI, Fabrizio DI VINCENZO, G. Rocchi, S. Rossetti, F. Storti, Fabrizio 2004 http://hdl.handle.net/11381/2388843 unknown info:eu-repo/semantics/altIdentifier/wos/WOS:000222961000008 volume:223 firstpage:349 lastpage:364 numberofpages:16 journal:EARTH AND PLANETARY SCIENCE LETTERS http://hdl.handle.net/11381/2388843 info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-3042776524 info:eu-repo/semantics/closedAccess info:eu-repo/semantics/article 2004 ftunivparmairis 2024-03-28T01:17:50Z Fault-generated pseudotachylytes are the product of frictional melting during high-velocity slip associated with coseismic faulting. 40Ar–39Ar dating of pseudotachylytes represents a powerful tool to directly determine the age of brittle faulting which is otherwise dated only indirectly. However, the pronounced spatial heterogeneity of most endogenically generated pseudotachylytes, due to the intimate coexistence of unmelted mineral clasts from the source rock, frictional glass and neogenic igneous minerals, often precludes a straightforward interpretation of argon data. This requires careful evaluation of the role of clasts in plaguing the age record of the pseudotachylyte matrix. This study exploits the full potential of the 40Ar–39Ar method, using laser step-heating and laser in situ techniques in conjunction with textural and chemical characterisation at the microscale to disentangle the complexity of the first record of pseudotachylytes generated in the right-lateral fault systems which dissect the western shoulder of the West Antarctic Rift System. Pseudotachylytes occur as fault and injection veins. They exhibit glassy matrices with a potassium feldspar-like composition, and invariably contain, at a millimeter to microscopic scale, unmelted quartz and subordinate feldspars from the source rock. Injection veins characteristically contain much fewer mineral clasts. In situ ultraviolet (UV) laser analyses indicate that quartz from the host rock and from clasts within the fault veins contains significant amounts (f10–50 ppb) of parentless 40Ar, most probably hosted in microscopic to submicroscopic fluid inclusions, associated with high Cl/K ratios. Infrared laser step-heating experiments on fault vein pseudotachylyte matrices yield strongly discordant age spectra with an overall saddle shape characterised by a minimum at f34 Ma, unrealistically old ages at high temperatures associated with high Cl/K ratios and total gas ages of 41.5–44.3 Ma. Petrographic data and the pronounced compositional similarity ... Article in Journal/Newspaper Antarc* Antarctic Archivio della ricerca dell'Università di Parma (CINECA IRIS)
institution Open Polar
collection Archivio della ricerca dell'Università di Parma (CINECA IRIS)
op_collection_id ftunivparmairis
language unknown
description Fault-generated pseudotachylytes are the product of frictional melting during high-velocity slip associated with coseismic faulting. 40Ar–39Ar dating of pseudotachylytes represents a powerful tool to directly determine the age of brittle faulting which is otherwise dated only indirectly. However, the pronounced spatial heterogeneity of most endogenically generated pseudotachylytes, due to the intimate coexistence of unmelted mineral clasts from the source rock, frictional glass and neogenic igneous minerals, often precludes a straightforward interpretation of argon data. This requires careful evaluation of the role of clasts in plaguing the age record of the pseudotachylyte matrix. This study exploits the full potential of the 40Ar–39Ar method, using laser step-heating and laser in situ techniques in conjunction with textural and chemical characterisation at the microscale to disentangle the complexity of the first record of pseudotachylytes generated in the right-lateral fault systems which dissect the western shoulder of the West Antarctic Rift System. Pseudotachylytes occur as fault and injection veins. They exhibit glassy matrices with a potassium feldspar-like composition, and invariably contain, at a millimeter to microscopic scale, unmelted quartz and subordinate feldspars from the source rock. Injection veins characteristically contain much fewer mineral clasts. In situ ultraviolet (UV) laser analyses indicate that quartz from the host rock and from clasts within the fault veins contains significant amounts (f10–50 ppb) of parentless 40Ar, most probably hosted in microscopic to submicroscopic fluid inclusions, associated with high Cl/K ratios. Infrared laser step-heating experiments on fault vein pseudotachylyte matrices yield strongly discordant age spectra with an overall saddle shape characterised by a minimum at f34 Ma, unrealistically old ages at high temperatures associated with high Cl/K ratios and total gas ages of 41.5–44.3 Ma. Petrographic data and the pronounced compositional similarity ...
author2 DI VINCENZO, G.
Rocchi, S.
Rossetti, F.
Storti, Fabrizio
format Article in Journal/Newspaper
author DI VINCENZO G.
ROCCHI S.
ROSSETTI F.
STORTI, Fabrizio
spellingShingle DI VINCENZO G.
ROCCHI S.
ROSSETTI F.
STORTI, Fabrizio
40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System
author_facet DI VINCENZO G.
ROCCHI S.
ROSSETTI F.
STORTI, Fabrizio
author_sort DI VINCENZO G.
title 40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System
title_short 40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System
title_full 40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System
title_fullStr 40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System
title_full_unstemmed 40Ar–39Ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in Cenozoic fault–generated friction melts from the West Antarctic Rift System
title_sort 40ar–39ar dating of pseudotachylytes: the effect of clast–hosted extraneous argon in cenozoic fault–generated friction melts from the west antarctic rift system
publishDate 2004
url http://hdl.handle.net/11381/2388843
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_relation info:eu-repo/semantics/altIdentifier/wos/WOS:000222961000008
volume:223
firstpage:349
lastpage:364
numberofpages:16
journal:EARTH AND PLANETARY SCIENCE LETTERS
http://hdl.handle.net/11381/2388843
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-3042776524
op_rights info:eu-repo/semantics/closedAccess
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