Sediment fingerprinting methods aim to determine the relative contribution of different source areas in detrital sediments based on natural properties – fingerprints – of the source areas. Here, we use U/Th–Pb age signatures as fingerprints, assuming that the age signal is not altered during erosion–transportation–deposition events, and given that recent technological advances enable precise dating of large amounts of grains. We introduce a formal inversion method that allows to disentangle the amalgamation of source contributions in detrital zircon data and enables to convert this information into an erosion rate map starting from the spatial distribution of zircon age signatures. Relying on the least‐squares method and using prior and cov...
Zircon is the most widely used mineral in detrital dating studies because it is common to multiple r...
He-Pb double dating of detrital zircons is more reliable than conventional U-Pb dating for tracing t...
In order to better understand the human impact on fluvial sediment dynamics at various timescales, i...
Detrital provenance analysis is an important tool in our understanding paleo-fluvial drainages, eros...
Detrital provenance analysis is an important tool in our understanding paleo-fluvial drainages, eros...
Our understanding of the evolution of the Earth’s surface is driven by our knowledge and comprehensi...
Detrital studies that utilize zircon U–Pb geochronology and fission-track (FT) thermochronometry are...
He–Pb double dating of detrital zircons is more reliable than conventional U–Pb dating for tracing t...
He–Pb double dating of detrital zircons is more reliable than conventional U–Pb dating for tracing t...
Detrital studies that utilise zircon U-Pb geochronology and fission-track (FT) thermochronometry are...
The effect of selective preservation during transportation of zircon grains on the detrital age spec...
The provenance of clastic sediments remains one of the key tools for understanding the complex dynam...
This project was designed to disentangle sedimentary signals controlled by changes in the lithospher...
Abstract Understanding the origins, or provenance, of a sedimentary deposit is an important aspect o...
Understanding the origins, or provenance, of a sedimentary deposit is an important aspect of geology...
Zircon is the most widely used mineral in detrital dating studies because it is common to multiple r...
He-Pb double dating of detrital zircons is more reliable than conventional U-Pb dating for tracing t...
In order to better understand the human impact on fluvial sediment dynamics at various timescales, i...
Detrital provenance analysis is an important tool in our understanding paleo-fluvial drainages, eros...
Detrital provenance analysis is an important tool in our understanding paleo-fluvial drainages, eros...
Our understanding of the evolution of the Earth’s surface is driven by our knowledge and comprehensi...
Detrital studies that utilize zircon U–Pb geochronology and fission-track (FT) thermochronometry are...
He–Pb double dating of detrital zircons is more reliable than conventional U–Pb dating for tracing t...
He–Pb double dating of detrital zircons is more reliable than conventional U–Pb dating for tracing t...
Detrital studies that utilise zircon U-Pb geochronology and fission-track (FT) thermochronometry are...
The effect of selective preservation during transportation of zircon grains on the detrital age spec...
The provenance of clastic sediments remains one of the key tools for understanding the complex dynam...
This project was designed to disentangle sedimentary signals controlled by changes in the lithospher...
Abstract Understanding the origins, or provenance, of a sedimentary deposit is an important aspect o...
Understanding the origins, or provenance, of a sedimentary deposit is an important aspect of geology...
Zircon is the most widely used mineral in detrital dating studies because it is common to multiple r...
He-Pb double dating of detrital zircons is more reliable than conventional U-Pb dating for tracing t...
In order to better understand the human impact on fluvial sediment dynamics at various timescales, i...