International audienceThe Wonoka–Shuram Anomaly represents the largest negative carbon isotope excursion recognized in the geologic record and is associated with the emergence and diversification of metazoan life ca. 580 million years ago (Ma). The origin of the anomaly is highly debated, with interpretations ranging from primary to diagenetic, each having unique and potentially transformative implications for early life. Here, we apply carbonate clumped isotope thermometry to three sections expressing the anomaly in order to constrain mineral formation temperatures and thus directly calculate water oxygen isotope compositions (δ18Ow) with which carbonate minerals equilibrated. With δ18Ow known, it is possible to address previous hypotheses...
Thesis (Ph.D.)--University of Washington, 2019Land temperature at the surface of the Earth is a firs...
“Clumped-isotope” thermometry is an emerging tool to probe the temperature history of surface and su...
Geochemical analyses of carbonate minerals yield multiple parameters which can be used to estimate t...
International audienceThe Wonoka–Shuram Anomaly represents the largest negative carbon isotope excur...
The Wonoka-Shuram Anomaly represents the largest negative carbon isotope excursion recognized in the...
The δ18O of carbonates is most one of the most popular tools used in both marine and terrestrial env...
In this dataset, we provide analytical and model data to Dual clumped isotope thermometry resolves k...
Surface temperature is a fundamental parameter of Earth’s climate. Its evolution through time is com...
This item is only available electronically.Variations in the carbon isotopic composition (δ13C) of c...
Carbonate clumped isotope thermometry is a relatively new paleotemperature proxy based on measuremen...
During my PhD, I was applying the clumped isotope technique to modern brachiopods and fossil belemni...
Making precise measurements of clumped-isotopes in CO2 (reported as Δ47) is resource-intensive and t...
Much of what we know about the history of Earth’s climate derives from the chemistry of carbonate mi...
Methane cold seep systems typically exhibit extensive buildups of authigenic carbonate minerals, res...
Thesis (Ph.D.)--University of Washington, 2019Land temperature at the surface of the Earth is a firs...
“Clumped-isotope” thermometry is an emerging tool to probe the temperature history of surface and su...
Geochemical analyses of carbonate minerals yield multiple parameters which can be used to estimate t...
International audienceThe Wonoka–Shuram Anomaly represents the largest negative carbon isotope excur...
The Wonoka-Shuram Anomaly represents the largest negative carbon isotope excursion recognized in the...
The δ18O of carbonates is most one of the most popular tools used in both marine and terrestrial env...
In this dataset, we provide analytical and model data to Dual clumped isotope thermometry resolves k...
Surface temperature is a fundamental parameter of Earth’s climate. Its evolution through time is com...
This item is only available electronically.Variations in the carbon isotopic composition (δ13C) of c...
Carbonate clumped isotope thermometry is a relatively new paleotemperature proxy based on measuremen...
During my PhD, I was applying the clumped isotope technique to modern brachiopods and fossil belemni...
Making precise measurements of clumped-isotopes in CO2 (reported as Δ47) is resource-intensive and t...
Much of what we know about the history of Earth’s climate derives from the chemistry of carbonate mi...
Methane cold seep systems typically exhibit extensive buildups of authigenic carbonate minerals, res...
Thesis (Ph.D.)--University of Washington, 2019Land temperature at the surface of the Earth is a firs...
“Clumped-isotope” thermometry is an emerging tool to probe the temperature history of surface and su...
Geochemical analyses of carbonate minerals yield multiple parameters which can be used to estimate t...