Feasibility of estimating firing temperature using the 110°C TL peak of quartz
Author:
Publisher
Elsevier BV
Subject
Radiation
Reference10 articles.
1. 110°C TL peak records the ancient heat treatment of flint;Goksu;Ancient TL,1989
2. Dependence of TL-property changes of natural quartzes on aluminium contents accompanied by thermal annealing treatment;Hashimoto;Radiat. Meas.,1994
3. Pre-dose TL characteristics of quartz inclusion removed from atmospheric testing at the Nevada test site;Haskell;Nucl. Tracks Radiat. Meas.,1988
4. Effect of heat treatment on the iron-57 Mössbaur spectrum;Jones;J. Phys. Colloq.,1979
5. Thermal treatments and emission spectra of TL from quartz;Rendell;Radiat. Meas.,1994
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1. How reproducible are kinetic parameter constraints of quartz luminescence? An interlaboratory comparison for the 110 °C TL peak;Radiation Measurements;2018-03
2. Pure thermal sensitisation and pre-dose effect of OSL in both unfired and annealed quartz samples;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2017-06
3. Technological aspects of Mesopotamian Uruk pottery: estimating firing temperatures using mineralogical methods, thermal analysis and luminescence techniques;Archaeological and Anthropological Sciences;2016-10-19
4. Dating fires and estimating the temperature attained on stone surfaces. The case of Ciudad de Vascos (Spain);Microchemical Journal;2016-07
5. Dependence of heating rates of thermal activation on thermal activation characteristics of 110 °C TL peak of quartz: A simulation approach;Radiation Physics and Chemistry;2015-10
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