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Journal Article

Optical dating of loessic hillslope sediments constrains timing of prehistoric rockfalls, Christchurch, New Zealand

Reza Sohbati; Josh Borella; Andrew Murray; Mark Quigley; Jan‐Pieter Buylaert
Journal of Quaternary Science · Vol. 31, Issue 7 · pp. 678-690 · 2016

Abstract

Developing a robust chronology for mass‐movement events is of crucial importance to understanding triggering mechanisms and assessing hazards. We constrain the emplacement time of four palaeorockfall boulders near Christchurch, New Zealand, using optically stimulated luminescence (OSL) of quartz and infrared stimulated luminescence dating (IRSL) of K‐feldspar from loessic hillslope deposits underlying and upslope of individual boulders. The quartz OSL and K‐feldspar pIRIR 290 ages are all consistent with the stratigraphy and in excellent agreement with each other, indicating that all the boulders that overlie the in situ loess must have been emplaced 3 He surface‐exposure ages from the surfaces of each boulder shows that two out of four boulders contain pre‐deposition 3 He inheritance. Overall, the optical ages are consistent with both a prehistoric rockfall event at 6–8 ka and a possible preceding event at 12–14 ka. This study is the first to show a successful application of luminescence dating to New Zealand colluvium loess and demonstrates the great advantage of a multi‐technique approach in mass‐movement dating.

Bibliographic Information

JournalJournal of Quaternary Science
PublisherWiley
Publication Date2016-10-01
Publication Year2016
Volume31
Issue7
Pages678-690
Document TypeJournal Article
Print ISSN0267-8179
eISSN1099-1417
DOI10.1002/jqs.2895
SubjectEarth & Environmental Science

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NARA Access Coverage1996-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/10991417
Publisher PageOpen Publisher Page
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