Geoarchaeology · 2001 · 25 citations · 18 references
Isotope AnalysisU UptakeEngineeringSecondary UptakeEvolutionary BiologyGeologySecondary U UptakeBiostratigraphyRadiocarbon DatingGeochronologyEsr IsochronFossil TeethEarth ScienceArchaeological DatingGeologic Time Scale
Abstract At Bau de l'Aubesier, Provence, Mousterian artifacts and human teeth occur in inhomogeneous (“lumpy”) sedimentary deposits that include bone and tooth fragments and extensive burnt horizons. Electron spin resonance (ESR) isochron analyses of mammal teeth, which use multiple subsamples with different U concentrations, can measure the external dose rate experienced by the tooth regardless of reworking and sedimentary dose rate changes. Isochron analyses do depend on the U uptake model assumed, but can also identify teeth that have experienced secondary U uptake or leaching. Using 11 teeth from six archaeological layers, the isochrons demonstrate that at least three teeth have experienced secondary uptake. For eight teeth, the U uptake has apparently not followed strictly early (EU), linear (LU), or recent uptake (RU), but more closely approximates LU‐RU. Comparing volumetrically averaged sedimentary geochemistry with thermoluminescent dosimetry suggests that fossil tissues in the sediment have also experienced LU‐RU uptake. LU‐RU uptake can explain standard ESR ages that underestimate the true fossil age. © 2001 John Wiley & Sons, Inc.
18
Douglas G. Martinson, Nicklas G. Pisias, James D Hays et al. · Quaternary Research · 1987 · 3.3K citations
Marine Geology, Engineering, High-resolution Deep-sea Chronostratigraphy +14
Beta doses in tooth enamel by “one-group” theory and the ROSY ESR dating software
B.J. Brennan, W.J. Rink, E.L. McGuirl et al. · Radiation Measurements · 1997 · 120 citations