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Earth Surface Dynamics An interactive open-access journal of the European Geosciences Union

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Earth Surf. Dynam., 4, 895-909, 2016
http://www.earth-surf-dynam.net/4/895/2016/
doi:10.5194/esurf-4-895-2016
© Author(s) 2016. This work is distributed
under the Creative Commons Attribution 3.0 License.
Research article
22 Dec 2016
Glaciation's topographic control on Holocene erosion at the eastern edge of the Alps
Jean L. Dixon et al.
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Interactive discussionStatus: closed
AC: Author comment | RC: Referee comment | SC: Short comment | EC: Editor comment
Printer-friendly Version - Printer-friendly version      Supplement - Supplement
 
SC1: 'Some comments and suggestions for edits', Marco G. Jorge, 27 Jun 2016 Printer-friendly Version 
AC1: 'Response to Marco Jorge', Jean Dixon, 02 Nov 2016 Printer-friendly Version Supplement 
 
RC1: 'Review of manuscript Esurf-2016-29 by J.L. Dixon and co-authors', Pierre Valla, 29 Jun 2016 Printer-friendly Version 
AC2: 'Response to Reviewers', Jean Dixon, 02 Nov 2016 Printer-friendly Version Supplement 
 
RC2: 'Review of Dixon et al., Glaciation’s topographic control on Holocene erosion at the eastern edge of the Alps', Peter van der Beek, 07 Jul 2016 Printer-friendly Version Supplement 
AC3: 'Response to Reviewers', Jean Dixon, 02 Nov 2016 Printer-friendly Version Supplement 
 
AC4: 'Response to Reviewers', Jean Dixon, 02 Nov 2016 Printer-friendly Version Supplement 
Peer review completion
AR: Author's response | RR: Referee report | ED: Editor decision
AR by Anna Mirena Feist-Polner on behalf of the Authors (03 Nov 2016)  Author's response  Manuscript
ED: Publish as is (11 Nov 2016) by Jean Braun
ED: Publish as is (12 Nov 2016) by Prof. Frédéric Herman (Editor)  
Publications Copernicus
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Short summary
We quantify the glacial legacy of Holocene erosion at the eastern edge of the European Alps and add insight to the debate on drivers of Alpine erosion. We present the first data explicitly comparing 10Be-based erosion rates in previously glaciated and non-glaciated basins (n = 26). Erosion rates vary 5-fold across the region, correlating with local topography and glacial history. Our approach and unique study site allow us to isolate the role of glacial topographic legacies from other controls.
We quantify the glacial legacy of Holocene erosion at the eastern edge of the European Alps and...
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