Duluth Complex apatites: Age reference material for LA–ICP–MS‐based fission‐track dating
Author:
Affiliation:
1. Kyoto Fission‐Track Co., Ltd. Kyoto Japan
2. Department of Earth and Environmental Sciences Yamagata University Yamagata Japan
3. Geochemical Research Center The University of Tokyo Tokyo Japan
4. Geological Survey of Japan, AIST Tsukuba Japan
Publisher
Wiley
Subject
Geology
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1111/ter.12393
Reference40 articles.
1. LA–ICP–MS‐based apatite fission track dating of the Todos Santos Formation sandstones from the Sierra de Chiapas (SE Mexico) and its tectonic significance;Abdullin F.;International Geology Review,2016
2. Quantitative mineralogy and microanalysis of sediments and sedimentary rocks 2012 Mineralogical Association of Canada Short Course 42 St. John's NL D. M. Chew R. A. Donelick P. Sylvester Combined apatite fission track and U–Pb dating by LA‐ICPMS and future trends in apatite provenance analysis 219 247
3. Determination of zeta values for fission‐track age calibration using thermal neutron irradiation at the JRR‐3 reactor of JAEA, Japan;Danhara T.;The Journal of the Geological Society of Japan,2009
4. A review of the present state of the absolute calibration for zircon fission track geochronology using the external detector method;Danhara T.;Island Arc,2013
5. Apatite fission‐track analysis;Donelick R. A.;Reviews in Mineralogy & Geochemistry,2005
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