Journal article
Using X-rays as an irradiation source for direct ESR dating of fossil teeth
Quaternary Geochronology, Vol.72, pp.1-9
08/2022
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Abstract
In this paper we have tested the potential application of X-rays as an irradiation source in Electron Spin Resonance dating of tooth enamel. A range of modern and fossil samples were used to assess the feasibility of dose estimations using this alternative irradiator. The use of a known laboratory additive dose allows the calculation of an absorption equivalent coefficient between gamma-rays and X-rays. The results show that equivalent doses obtained with gamma-rays on fossil powder enamel was frequently less than the doses obtained on fragments using only X-rays. This agrees with other studies that gamma irradiation can lead to age underestimation problems, and also indicates that X-ray sources could be more suitable for ESR dating. Here, we show that testing penetration attenuation for each individual irradiation source is required to accurately estimate the maximum enamel thickness and produce reliable protocols. We conclude that X-rays are an alternative irradiation source for ESR dating protocols, however, limitations remain in particular with alpha efficiency.
Details
- Title
- Using X-rays as an irradiation source for direct ESR dating of fossil teeth
- Creators
- Wenjing Yu - La Trobe UniversityAndy I.R. Herries - La Trobe UniversityRenaud Joannes-Boyau - Southern Cross University
- Publication Details
- Quaternary Geochronology, Vol.72, pp.1-9
- Publisher
- Elsevier BV; London
- Grant note
- This research was supported through the Australian Research Council discovery grants (ARC DP140100919, ARC DP 220100195 to RJB, ARC DP170100056 to AIRH and RJB), ARC LIEF grants (ARC LE200100022 to RJB), a Higher Degree Research fee waiver and living scholarships from La Trobe University and the La Trobe University Humanities and Social Science Internal Research Grant 2021-2-HDR-0008 to WY.
- Identifiers
- 991013044512402368
- Copyright
- © 2022 Elsevier B.V. All rights reserved.
- Academic Unit
- Faculty of Science and Engineering; Science
- Language
- English
- Resource Type
- Journal article