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Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam
Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam
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Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam
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Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam
Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam

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Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam
Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam
Journal Article

Glow-Peak Stability in sup.6LiF:Mg,Ti Exposed to a Fe-ion beam

2001
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Overview
The stability of glow peaks in [sup.6]LiF:Mg,Ti (TLD-600) exposed to a high-energy Fe-ion beam was examined in comparison to [sup.137]Cs [gamma]-ray irradiation under changing annealing conditions. The peak areas induced by the Fe ions were much smaller than those by [gamma]-rays. The sizes and positions of peaks 3-5 in Fe-ion irradiated samples were hardly changed after post-annealing at 100°C×30 min, regardless of the pre-annealing conditions (fast quenching or subsequent pre-annealing at 100°C×2h). Whereas, the peaks in [gamma]-ray irradiated samples were notably affected by post-annealing; the peak positions and peak-area sizes changed in different ways depending on the pre-annealing conditions. The effects of post-annealing on peak 6 were identical for Fe ions and [gamma]-rays. These facts suggest that peaks 3-5 in TLD-600 comprised both stable and unstable luminescent centers, and that the latter part would be easily depleted in highly dense ionization. Keywords: thermoluminescent detector, LiF:Mg,Ti, glow curve deconvolution, annealing, NIRS-HIMAC
Publisher
Oxford University Press