Glenn R. Sharman Source Confirmed
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Associate Professor
University of Arkansas at Fayetteville
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Biography and Research Information
OverviewAI-generated summary
Glenn R. Sharman's research centers on geochronology and provenance analysis, utilizing isotopic systems such as U-Pb and Lu-Hf to investigate the origins and transport of sediments. His work has explored the detrital zircon provenance of continental shelves, including the Bering Sea, and has examined the signals of coastal erosion and fluvial sediment supply in regions like Southern California. Sharman also investigates the geological processes influencing river systems, such as the impact of structural inheritance on the Laramide rivers of the Tornillo basin in west Texas.
His research also extends to the application of computational methods in geology, including the use of machine learning for predicting sand modal composition. Sharman has published on the modeling of apparent Pb loss in zircon U-Pb geochronology and the evidence for cryptic Pb loss in laser ablation dating techniques. He also explores paleoclimatic events, such as the coastal response to global warming during the Paleocene-Eocene Thermal Maximum, and analyzes geochemical data from sedimentary basins like the Gulf of Mexico.
Sharman holds an h-index of 20, with over 151 publications and 1,605 citations. He is recognized as a highly cited researcher. He actively collaborates with colleagues at the University of Arkansas at Fayetteville, including Jordan Oefinger, John Shaw, Barry Shaulis, and Kalli Dubois.
Metrics
- h-index: 20
- Publications: 151
- Citations: 1,605
Selected Publications
- A revised chronostratigraphy of the Triassic-Jurassic Moenave Formation, western USA: Implications for timing of continental climate change (2025) DOI
- Leaving no zircon unturned: quantifying the impact of handpicking sharply faceted detrital zircon on maximum depositional age analysis (2025) DOI
- The leaky chronometer: Evidence for systematic cryptic Pb loss in laser ablation U‐Pb dating of zircon relative to <scp>CA</scp>‐<scp>TIMS</scp> (2024) DOI
- Peri-Gondwanan sediment in the Arkoma Basin derived from the north: The detrital zircon record of a uniquely concentrated non-Laurentian source signal in the late Paleozoic (2024) DOI
- Modeling apparent Pb loss in zircon U–Pb geochronology (2024) DOI
- LEAVING NO ZIRCON UNTURNED: QUANTIFYING THE IMPACT OF HANDPICKING VS RANDOM ANALYSIS OF DETRITAL ZIRCON ON MAXIMUM DEPOSITIONAL AGE ANALYSIS (2023) DOI
- Impact of Mexican Border rift structural inheritance on Laramide rivers of the Tornillo basin, west Texas (USA): Insights from detrital zircon provenance (2023) DOI
- Carbon isotope chemostratigraphy, geochemistry, and biostratigraphy of the Paleocene–Eocene Thermal Maximum, deepwater Wilcox Group, Gulf of Mexico (USA) (2023) DOI
- Reply on RC1 (2023) DOI
- Reply on RC2 (2023) DOI
- Coastal response to global warming during the Paleocene-Eocene Thermal Maximum (2023) DOI
- Reply on RC1 (2023) DOI
- Reply on RC2 (2023) DOI
- Modeling apparent Pb loss in zircon U-Pb geochronology (2023) DOI
- Comment on cp-2022-86 (2023) DOI
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