Published September 2000 | Version v1
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Development of optically stimulated luminescence techniques using natural minerals and ceramics, and their application to retrospective dosimetry

Description

This thesis summarises research and development of optically stimulated luminescence (OSL) and its applications by the author at Risoe National Laboratory, up to 1999. These developments have been directed primarily at retrospective accident dosimetry and luminescence dating. Experimental investigations include the studies of OSL properties of the natural minerals quartz and feldspars and the artificial materials porcelain and aluminium oxide (Al2O3). Blue light emitting diodes and infrared laser diodes are shown to provide simple and practical alternatives to broad-band light and visible laser stimulation. The development of OSL apparatus designed for the rapid measurement of single grains of phosphors also opens up a new area of luminescence measurement, allowing the detailed examination of dose distributions within a multiple-grain sample. This is of particular importance to the studies of incompletely reset geological sediments, and to accident dosimetry measurements using unheated materials. Al2O3:C single crystals are tested as environmental OSL dosemeters for assessing both the natural background photon radiation dose rates in the field and the natural dose rates inside bricks collected for accident dose evaluation. Environmental doses of the order of few μGy are measured with high precision. UV photo-stimulated luminescence spectra obtained from porcelain samples are used to confirm that the main component responsible for the OSL signal from porcelain is Al2O3. OSL single-aliquot regenerative-dose (SAR) techniques are used with quartz extracted from Chernobyl bricks to determine the accrued dose after the accident. This has improved the measurement precision significantly, from about 5-6 % using traditional methods to now less than 2 %. Depth-dose profiles measured in Chernobyl bricks are compared with those obtained in the laboratory using different gamma sources and these comparisons show that the average energy of the accident radiation was lower than that of 137Cs photons. It is further demonstrated that doses lower than 50 μGy can be measured using the SAR method with a precision in the order of 2 %. This thesis was submitted to the University of Copenhagen in September 1999. (au)

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Available from INIS in electronic form

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Additional details

Publishing Information

ISBN
87-550-2755-5; 87-550-2756-3 (Internet)
Imprint Pagination
185 p.
Report number
RISO-R--1211(EN)

Optional Information

Notes
13 tabs., 112 ills., 206 refs.