Open Access

Palaeodose Underestimation Of Heated Quartz In Red-TL Dating Of Volcanic Contexts


Cite

Aitken MJ, 1985. Thermoluminescence dating. Academic Press, London.Search in Google Scholar

Bailey RM, Armitage SJ and Stokes S, 2005. An investigation of pulsed-irradiation regeneration of quartz OSL and its implications for the precision and accuracy of optical dating (Paper II). Radiation Measurements 39: 347–359, DOI 10.1016/j.radmeas.2004.07.004.10.1016/j.radmeas.2004.07.004Search in Google Scholar

Bessey GE, 1950. Investigations on building fires Part II: The visible changes in concrete or mortar exposed to high temperatures. National Building Studies, Technical Paper 4.Search in Google Scholar

Bonde A, Murray AS and Friedrich WL, 2001. Santorini: Luminescence dating of a volcanic province using quartz? Quaternary Science Reviews 20: 789–793, DOI 10.1016/S0277-3791(00)00034-2.10.1016/S0277-3791(00)00034-2Search in Google Scholar

Fuchs M, Straub J and Zöller L, 2005. Residual luminescence signals of recent river flood sediments: A comparison between quartz and feldspar of fine- and coarse-grain sediments. Ancient TL 23: 25–30.Search in Google Scholar

Fattahi M and Stokes S, 2000. Extending the time range of luminescence dating using red TL (RTL) from volcanic quartz. Radiation Measurements 32: 479–485, DOI 10.1016/S1350-4487(00)00105-0.10.1016/S1350-4487(00)00105-0Search in Google Scholar

Fattahi M and Stokes S, 2003. Dating volcanic and related sediments by luminescence methods: a review. Earth-Science Reviews 62: 229–264, DOI 10.1016/S0012-8252(02)00159-9.10.1016/S0012-8252(02)00159-9Search in Google Scholar

Ganzawa Y, Furukawa H, Hashimoto T, Sanzelle S, Miallier D and Pilleyre T, 2005. Single grains dating of volcanic quartz from pyroclastic flows using Red TL. Radiation Measurements 39: 479–487, DOI 10.1016/j.radmeas.2004.10.012.10.1016/j.radmeas.2004.10.012Search in Google Scholar

Hashimoto T, Yokosaka K and Habuki H, 1987. Emission properties of thermoluminescence from natural quartz blue and red TL response to absorbed dose. Nuclear Tracks and Radiation Measurements 13: 57–66, DOI 10.1016/1359-0189(87)90008-2.10.1016/1359-0189(87)90008-2Search in Google Scholar

Huntley DJ and Lamothe M, 2001. Ubiquity of anomalous fading in K-feldspars and the measurement and correction for it in optical dating. Canadian Journal of Earth Sciences 38: 1093–1106, DOI 10.1139/e01-013.10.1139/e01-013Search in Google Scholar

Kleber W, Bautsch H-J, Böhm J and Klimm D, 1998. Einführung in die Kristallographie. Verlag Technik.Search in Google Scholar

Lai Z and Fan A, 2014. Examining quartz OSL age underestimation for loess samples from Luochuan in the Chinese Loess Plateau. Geochronometria 41: 57–64, DOI 10.2478/s13386-013-0138-1.10.2478/s13386-013-0138-1Search in Google Scholar

Mauz B and Lang A, 2004. Removal of the feldspar-derived luminescence component from polymineral fine silt samples for optical dating applications: Evaluation of chemical treatment protocols and quality control procedures. Ancient TL 22: 1–8.Search in Google Scholar

Miallier D, Faïn J, Montret M, Pilleyre T, Sanzelle S and Soumana S, 1991. Properties of the red TL peak of quartz relevant to thermoluminescence dating. Nuclear Tracks and Radiation Measurements 18: 89–94, DOI 10.1016/1359-0189(91)90098-3.10.1016/1359-0189(91)90098-3Search in Google Scholar

Murray AS and Wintle AG, 2000. Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol. Radiation Measurements 32: 57–73, DOI 10.1016/S1350-4487(99)00253-X.10.1016/S1350-4487(99)00253-XSearch in Google Scholar

Richter D and Krbetschek M, 2006. A new thermoluminescence dating technique for heated flint. Archaeometry 48: 695–705, 10.1111/j.1475-4754.2006.00281.x.10.1111/j.1475-4754.2006.00281.xSearch in Google Scholar

Richter D, Pintaske R, Dornich K and Krbetschek M, 2012. A novel beta source design for uniform irradiation in dosimetric applications. Ancient TL 30: 57–63.Search in Google Scholar

Richter D, Richter A and Dornich K, 2013. lexsyg - a new system for luminescence research. Geochronometria 40: 220–228, DOI 10.2478/s13386-013-0110-0.10.2478/s13386-013-0110-0Search in Google Scholar

Schilles T, Poolton NRJ, Bulur E, Bøtter-Jensen L, Murray AS, Smith G, Riedi PC and Wagner GA, 2001. A multi-spectroscopic study of luminescence sensitivity changes in natural quartz induced by high-temperature annealing. Journal of Physics D: Applied Physics 34: 722–731, DOI 10.1088/0022-3727/34/5/310.10.1088/0022-3727/34/5/310Search in Google Scholar

Spooner NA, 1994. The anomalous fading of infrared-stimulated luminescence from feldspars. Radiation Measurements 23: 625–632, DOI 10.1016/1350-4487(94)90111-2.10.1016/1350-4487(94)90111-2Search in Google Scholar

Tsukamoto S, Murray AS, Huot S, Watanuki T, Denby PM and Bøtter-Jensen L, 2007. Luminescence property of volcanic quartz and the use of red isothermal TL for dating tephras. Radiation Measurements 42: 190–197, DOI 10.1016/j.radmeas.2006.07.008.10.1016/j.radmeas.2006.07.008Search in Google Scholar

van den Bogaard P and Schmincke HU, 1990. Die Entwicklungsgeschichte des Mittelrheinraumes und die Eruptionsgeschichte des Osteifel-Vulkanfeldes. In “Rheingeschichte zwischen Mosel und Maas.” (W Schirmer, Ed.), pp. 166–190. DEUQUA Führer 1. Deutsche Quartärvereinigung, Hannover.Search in Google Scholar

Visocekas R, Spooner NA, Zink A and Blanc P, 1994. Tunnel afterglow, fading and infrared emission in thermoluminescence of feldspars. Radiation Measurements 23: 377–385, DOI 10.1016/1350-4487(94)90067-1.10.1016/1350-4487(94)90067-1Search in Google Scholar

Wintle AG, 1973. Anomalous fading of thermoluminescence in mineral samples. Nature 245: 143–144, DOI 10.1038/245143a0.10.1038/245143a0Search in Google Scholar

Zöller L, 1995. Würm- und Rißlöß-Stratigraphie und Thermolumineszenz-Datierung in Süddeutschland und angrenzenden Gebieten. Fakultät für Geowissenschaften. Heidelberg, Ruprecht-Karls-Universität Heidelberg. Habilitation 224 pp. (http://www.ecu.edu/cs-cas/physics/Ancient-Timeline/Online-Theses.cfm)Search in Google Scholar

Zöller L, Richter D, Blanchard H, Einwögerer T, Händel M and Neugebauer-Maresch C, 2014. Our oldest children. Age constraints for the Krems-Wachtberg site obtained from various thermoluminescence dating approaches. Quaternary International 351: 83–87, DOI 10.1016/j.quaint.2013.05.003.10.1016/j.quaint.2013.05.003Search in Google Scholar

eISSN:
1897-1695
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Geosciences, other