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Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 4 Similar Profiles
exhumation Earth & Environmental Sciences
erosion Physics & Astronomy
rivers Physics & Astronomy
age structure Earth & Environmental Sciences
Erosion Chemical Compounds
erosion rate Earth & Environmental Sciences
Catchments Chemical Compounds
cooling Earth & Environmental Sciences

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Research Output 2014 2018

  • 4 Article
  • 1 Chapter
  • 1 PhD Thesis - Research VU, graduation VU

Downstream evolution of the thermochronologic age signal in the Brahmaputra catchment (eastern Himalaya): Implications for the detrital record of erosion

Gemignani, L., van der Beek, P. A., Braun, J., Najman, Y., Bernet, M., Garzanti, E. & Wijbrans, J. R., 1 Oct 2018, In : Earth and Planetary Science Letters. 499, p. 48-61 14 p.

Research output: Contribution to JournalArticleAcademicpeer-review

Catchments
erosion
Erosion
exhumation
catchment

Extracting Erosion and Exhumation Patterns from Detrital Thermochronology: an example from the eastern Himalaya

Gemignani, L., 2018, 183 p.

Research output: PhD ThesisPhD Thesis - Research VU, graduation VUAcademic

Open Access
File

Extracting information on the spatial variability in erosion rate stored in detrital cooling age distributions in river sands

Braun, J., Gemignani, L. & Van Der Beek, P., 29 Mar 2018, In : Earth Surface Dynamics. 6, p. 257-270 14 p.

Research output: Contribution to JournalArticleAcademicpeer-review

erosion rate
age structure
rivers
sands
erosion

A new detrital mica 40Ar/39Ar dating approach for provenance and exhumation of the Eastern Alps

Gemignani, L., Sun, X., Braun, J., van Gerve, T. D. & Wijbrans, J. R., 1 Aug 2017, In : Tectonics. 36, 8, p. 1521-1537 17 p.

Research output: Contribution to JournalArticleAcademicpeer-review

dating
mica
exhumation
erosion
provenance

Middle to late Eocene exhumation of the Greater Himalayan Sequence in the Central Himalayas: Progressive accretion from the Indian plate

Carosi, R., Montomoli, C., Laccarino, S., Massonne, H. J., Rubatto, D., Langone, A. & Gemignani, L., 2016, In : Geological Society of America Bulletin.

Research output: Contribution to JournalArticleAcademicpeer-review

Indian plate
exhumation
shear zone
Eocene
accretion