The single-aliquot regenerative-dose (SAR) protocols used in retrospective dosimetry for optically stimulated luminescence measurements have been mainly developed for archaeological and geological dating of quartz and feldspar. The aim in this study is to find a read-out protocol that can generate the most reproducible signal for household salt (NaCl) at absorbed doses below 100 mGy. The relation between the reproducibility of the signal, in terms of the ratio between given absorbed dose and SAR-calculated dose, and parameters such as test-dose pre-heat temperature has been studied. It was found that a temperature of 200°C yielded the best reproducibility in the SAR-calculated dose, which is a somewhat higher pre-heat temperature than what ...
The alkali halide NaCl (Common salt) is an environmentally-abundant phosphor of considerable potenti...
This paper examines the effects of optically stimulated luminescence (OSL) components, other than th...
The application of the single-aliquot regenerative-dose (SAR) protocol to equivalent dose determinat...
The authors' aim has been to find a single aliquot regenerative dose (SAR) protocol that accurately ...
Single aliquot protocols are now widely used as a means of measuring the equivalent dose (De) in qua...
We investigate the feasibility of a modified single-aliquot regenerative-dose (SAR) protocol for OSL...
Different single-aliquot regenerative-dose (SAR) protocols have now been applied for some years to q...
When using a single-aliquot regenerative dose (SAR) protocol for luminescence dating of sedimentary ...
The aim of this work was to investigate the potential of a selection of household salts (NaCl) as a ...
The reliability of equivalent-dose determinations on quartz made with the single-aliquot regenerativ...
The study of quartz grains (diameter 90–125 μm) from a modern dune sand from Australia shows a lack ...
The single aliquot regenerative dose (SAR) protocol offers the opportunity of exploring, relatively ...
In the optically stimulated luminescence (OSL) dating of quartz, the presence of significant medium ...
The reliability of equivalent-dose determinations on quartz made with the single-aliquot regenerativ...
This study discusses the values of equivalent dose (De) determined for samples taken for optical dat...
The alkali halide NaCl (Common salt) is an environmentally-abundant phosphor of considerable potenti...
This paper examines the effects of optically stimulated luminescence (OSL) components, other than th...
The application of the single-aliquot regenerative-dose (SAR) protocol to equivalent dose determinat...
The authors' aim has been to find a single aliquot regenerative dose (SAR) protocol that accurately ...
Single aliquot protocols are now widely used as a means of measuring the equivalent dose (De) in qua...
We investigate the feasibility of a modified single-aliquot regenerative-dose (SAR) protocol for OSL...
Different single-aliquot regenerative-dose (SAR) protocols have now been applied for some years to q...
When using a single-aliquot regenerative dose (SAR) protocol for luminescence dating of sedimentary ...
The aim of this work was to investigate the potential of a selection of household salts (NaCl) as a ...
The reliability of equivalent-dose determinations on quartz made with the single-aliquot regenerativ...
The study of quartz grains (diameter 90–125 μm) from a modern dune sand from Australia shows a lack ...
The single aliquot regenerative dose (SAR) protocol offers the opportunity of exploring, relatively ...
In the optically stimulated luminescence (OSL) dating of quartz, the presence of significant medium ...
The reliability of equivalent-dose determinations on quartz made with the single-aliquot regenerativ...
This study discusses the values of equivalent dose (De) determined for samples taken for optical dat...
The alkali halide NaCl (Common salt) is an environmentally-abundant phosphor of considerable potenti...
This paper examines the effects of optically stimulated luminescence (OSL) components, other than th...
The application of the single-aliquot regenerative-dose (SAR) protocol to equivalent dose determinat...