Have a personal or library account? Click to login
The Application of Full Spectrum Analysis to NaI(Tl) Gamma Spectrometry for the Determination of Burial Dose Rates Cover

The Application of Full Spectrum Analysis to NaI(Tl) Gamma Spectrometry for the Determination of Burial Dose Rates

Open Access
|Dec 2021

References

  1. Adolphi F, Güttler D, Wacker L, Skog G and Muscheler R, 2013. Intercomparison of C-14 dating of wood samples at Lund University and ETH Zurich AMS facilities: extraction, graphitization, and measurement. Radiocarbon 55(2–3): 391–400, DOI 10.1017/S0033822200057519.
  2. Ankjærgaard C and Murray AS, 2007. Total beta and gamma dose rates in trapped charge dating based on beta counting. Radiation Measurements 42: 352–359, DOI 10.1016/j.radmeas.2006.12.007.
  3. Blard PH, Balco G, Burnard PG, Farley KA, Fenton CR, Friedrich R, Jull AJT, Niedermann S, Pik R, Schaefer JM, Scott EM, Shuster DL, Stuart FM, Stute M, Tibari B, Winckler G and Zimmermann L, 2015. An inter-laboratory comparison of cosmogenic 3He and radiogenic 4He in the CRONUS-P pyroxene standard. Quaternary Geochronology 26: 11–19, DOI 10.1016/j.quageo.2014.08.004.
  4. Bu M, Murray AS, Kook M, Helsted LM, Buylaert J-P and Thomsen KJ, 2018. Characterisation of scintillator-based gamma spectrometers for determination of sample dose rate in OSL dating applications. Radiation Measurements 120: 253–259, DOI 10.1016/j.radmeas.2018.07.003.
  5. Burrus CS, Barreto JA and Selesnick IW, 1994. Iterative reweighted least squares design of FIR filters. IEEE Transactions on Signal Processing 42(11): 2926–2936, DOI 10.1109/78.330353.
  6. Chen C, He L, Li H and Huang J, 2018. Fast iteratively reweighted least squares algorithms for analysis-based sparse reconstruction. Medical Image Analysis 49: 141–152, DOI 10.1016/j.media.2018.08.002.
  7. Daubechies I, DeVore R, Fornasier M and Gunturk CS, 2010. Iteratively reweighted least squares minimization for sparse recovery. Communications on Pure and Applied Mathematics 63(1):1–38, DOI 10.1002/cpa.20303.
  8. Dean P, 1964. Computer Techniques in γ spectrometry. In: Adams J and Lowder W, eds., The Natural Radiation Environment. The University of Chicago Press, pp.617–626.
  9. Guérin G, Mercier N and Adamiec G, 2011. Dose-rate conversion factors: Update. Ancient TL 29: 5–8.
  10. Hajdas I, Lindroos A, Heinemeier J, Ringbom A, Marzaioli F, Terrasi F, Passariello I, Capano M, Artioli G, Addis A, Secco M, Michalska D, Czernik J, Goslar T, Hayen R, Van Strydonck M, Fontaine L, Boudin M, Maspero F, Panzeri L, Galli A, Urbanova P and Guibert P, 2017. Preparation and dating of mortar samples-mortar dating inter-comparison study (MODIS). Radiocarbon 59(6):1845–1858, DOI 10.1017/RDC.2017.112.
  11. Hendriks PHGM, Limburg J and de Meijer RJ, 2001. Full-spectrum analysis of natural γ-ray spectra. Journal of Environmental Radioactivity 53: 365–380, DOI 10.1016/S0265-931X(00)00142-9.
  12. IAEA Live Chart of Nuclides, March 2018. nuclear structure and decay data, WEB site: <https://wwwnds.iaea.org/relnsd/vcharthtml/VChartHTML.html>. Accessed 2018.10.10.
  13. Jeong M, Lee KB, Kim KJ, Lee M-K and Han J-B, 2014. Gamma-ray Full Spectrum Analysis for Environmental Radioactivity by HPGe Detector. Journal of Astronomy and Space Science 31(4): 317–323, DOI 10.5140/JASS.2014.31.4.317.
  14. Jull AJT, Pearson CL, Taylor RE, Southon JR, Santos GM, Kohl CP, Hajdas I, Molnar M, Baisan C, Lange TE, Cruz R, Janovics R and Major I, 2018. Radiocarbon Dating and Intercomparison of Some Early Historical Radiocarbon Samples. Radiocarbon 60(2): 535–548, DOI 10.1017/RDC.2018.18.
  15. Liritzis I, Stamoulis K, Papachristodoulou C and Ioannides K, 2013. A re-evaluation of radiation dose-rate conversion factors. Mediterranean Archaeology and Archaeometry 13(3): 1–15.
  16. Mentes G and Eper-Pápai I, 2015. Investigation of temperature and barometric pressure variation effects on radon concentration in the Sopronbánfalva Geodynamic Observatory, Hungary. Journal of Environmental Radioactivity 149: 64–72, DOI 10.1016/j.jenvrad.2015.07.015.
  17. Murray AS, Buylaert J-P and Thiel C, 2015. A luminescence dating intercomparison based on a Danish beach-ridge sand. Radiation Measurements 81: 32–38, DOI 10.1016/j.radmeas.2015.02.012.
  18. Murray AS, Helsted LM, Autzen M, Jain M and Buylaert J-P, 2018. Measurement of natural radioactivity: calibration and performance of a high-resolution gamma spectrometry facility. Radiation Measurements 120: 215–220, DOI 10.1016/j.radmeas.2018.04.006.
  19. NRCAN-1, Uranium Ore BL-5, Natural Resources Canada, WEB: <http://www.nrcan.gc.ca/mining-materials/certified-reference-materials/certificate-price-list/8115>.
  20. NRCAN-2, Thorium Ore OKA-2, Natural Resources Canada, WEB: <http://www.nrcan.gc.ca/mining-materials/certified-reference-materials/certificate-price-list/8135>.
  21. Scott E, Cook G and Naysmit P, 2010. The fifth international radiocarbon intercomparison (VIRI): an assessment of laboratory performance in stage 3. Radiocarbon 53(2–3): 859–865, DOI 10.1017/S003382220004594X.
  22. Schubert M, Musolff A and Weiss H, 2018. Influences of meteorological parameters on indoor radon concentrations (222Rn) excluding the effects of forced ventilation and radon exhalation from soil and building materials. Journal of Environmental Radioactivity 192: 81–85, DOI 10.1016/j.jenvrad.2018.06.011.
  23. Vermeesch P, Balco G, Blard PH, Dunai TJ, Kober F, Niedermann S, Shuster DL, Strasky S, Stuart FM, Wieler R and Zimmermann L, 2015. Interlaboratory comparison of 21Ne in quartz. Quaternary Geochronology 26: 20–28, DOI 10.1016/j.quageo.2012.11.009.
  24. Zeier M, Hoffmann J and Wollensack M, 2012. Metas.UncLib—a measurement uncertainty calculator for advanced problems. Metrologia 49: 809–815, DOI 10.1088/0026-1394/49/6/809.
Language: English
Page range: 161 - 170
Submitted on: Feb 15, 2019
|
Accepted on: Oct 28, 2019
|
Published on: Dec 31, 2021
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2021 Minqiang Bu, Andrew S. Murray, Myungho Kook, Jan-Pieter Buylaert, Kristina J. Thomsen, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.