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Schmidt-hammer exposure-age dating of talus slopes in upper Jostedalen, southern Norway

Interpreting the age and development of diachronous surfaces

Datos Bibliográficos

ID7170451
AutoresJohn A Matthews (0000-0002-2610-863X, Swansea University, autor de correspondencia), Richard W Mourne (0000-0003-0550-9888, University of the West of England)
Año2025
Volumen35
Número3
Páginas340-351
Fecha de publicación2025-03-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaThe Holocene (JOURNAL)
Identificadores de la revistaISSN: 0959-6836 • E-ISSN: 1477-0911
EditorialSAGE Publications Inc (PUBLISHER)
DOI10.1177/09596836241296068
OpenAlexW4404995738
IdiomaEN
Citas recibidas1
Referencias citadas80

Schmidt-hammer exposure-age dating (SHD) was used to evaluate the surface age, dynamics and evolution of eight talus (scree) slopes located between ~520 and ~1010 m a.s.l. in the upper Jostedalen area of southern Norway. Statistically significant differences in mean R-values were found between talus slopes but there was no consistent difference in R-values between three mid- to lower-slope positions, two operators, or first and second impacts from the same boulders. A new regional age-calibration equation yielded SHD ages ranging from 8425 ± 700 years to 2620 ± 740 years. SHD ages from talus slopes and other landforms with diachronous surfaces (such as alluvial fans, snow-avalanche fans, pronival ramparts and rock glaciers) represent the average exposure age of the surface boulders and provide insights into landform evolution. Here, our SHD ages are interpreted in terms of Early Holocene paraglacial rock-slope instability, Mid-Holocene permafrost degradation, low but possibly variable rates of rockfall activity in the Late-Holocene, and spatial variations affected by local site differences. Survival of rock particles with relatively old exposure ages towards the distal margins of the talus slopes is attributed to their slow development with low levels of modern activity. SHD ages from diachronous surfaces may considerably underestimate landform age (defined as the onset of landform formation). Greater application can be anticipated, however, in the inference of landform dynamics from the R-value distributions of diachronous surfaces and in the use of SHD age as an indicator of the extent of modern activity

Alluvium · Colluvium · Diachronous · Geography · Geomorphology · Glacier · Holocene · Landform · Physical geography · Rock glacier · Schmidt hammer · Cryospheric studies and observations · Geology and Paleoclimatology Research · Landslides and related hazards · Geology · Paleontology

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    Open Access•John A Matthews, Henriette C Linge et al.•The Holocene•2026

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    Open Access•Matt D Tomkins, Jason M Dortch et al.•Quaternary Research•2018

  • Holocene glacial and climate history of the Jostedalsbreen region, Western Norway; evidence from lake sediments and terrestrial deposits

    Open Access•Atle Nesje, Mons Kvamme et al.•Quaternary Science Reviews•1991

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    Open Access•Achille Mauri, Basil Davis et al.•Quaternary Science Reviews•2015

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    Open Access•Atle Nesje•Quaternary Science Reviews•2009

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    Open Access•Anna L C Hughes, Richard Gyllencreutz et al.•Boreas•2016

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    Open Access•C Scapozza, Chantal Del Siro et al.•Geographica Helvetica•2021

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    Open Access•Svein Olaf Dahl, Atle Nesje et al.•The Holocene•2002

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  • Multiple rock-slope failures from Mannen in Romsdal Valley, western Norway, revealed from Quaternary geological mapping and 10 Be exposure dating

    Open Access•Paula Hilger, Reginald L Hermanns et al.•The Holocene•2018

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    Open Access•Simon Hinchliffe•The Holocene•1999

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Obras citantes distintas1
Citas por año1
Intervalo de citas2026 - 2026 (1)
Velocidad de citacióncurrent
Altamente citadoNo
Tipos de citaNeutras: 1
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