Basics of Fission-track Geo- and Thermo-chronometry: Revisiting Its History to Explore Future Potential
Author:
Affiliation:
1. Institute of Nature and Environmental Technology, Kanazawa University
2. Tono Geoscience Center, Japan Atomic Energy Agency
3. Division of Earth and Planetary Sciences, Graduate School of Science, Kyoto University
Publisher
Japan Radioisotope Association
Subject
Radiation
Link
https://www.jstage.jst.go.jp/article/radioisotopes/70/3/70_700304/_pdf
Reference76 articles.
1. 2) Faure, G. and Mensing, T. M., Isotopes: Principles and Applications, pp. 928, Wiley and Sons, Inc., New Jersey (2004)
2. 3) Green, P. F., Duddy, I. R., Gleadow, A. J. W. and Lovering, J. F., Apatite fission-track analysis as a paleotemperature indicator for hydrocarbon exploration, In Naeser, N. D. and McCulloh, T. H. (eds.), Thermal History of Sedimentary Basins. Methods and Case Histories., pp. 181–195, Springer-Verlag, New York (1989)
3. 4) Brandon, M. T., Decomposition of fission-track grain-age distributions, Am. J. Sci., 292, 535–564 (1992)
4. 5) Gleadow, A. J. W., Duddy, I. R., Green, P. F. and Hegarty, K. A., Fission track lengths in the apatite annealing zone and the interpretation of mixed ages, Earth Planet. Sci. Lett., 78, 245–254 (1986)
5. 6) Hurford, A. J., An historical perspective on fission-track thermochronology, In Malusà, M. G. and Fitzgerald, P. G. (eds.), Fission-Track Thermochronology and its Application to Geology., pp. 3–23, Springer International Publishing AG, Switzerland (2019)
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