Improving thermoluminescence response through the fabrication of novel microstructured fibers
Author:
Funder
UM-MOHE High Impact Research
Publisher
Elsevier BV
Subject
Radiation
Reference10 articles.
1. Potential application of pure silica optical flat fibers for radiation therapy dosimetry;Alawiah;Radiat. Phys. Chem.,2015
2. Performance of Ge-doped optical fiber as a thermoluminescent dosimeter;Benabdesselam;IEEE Trans. Nucl. Sci.,2013
3. Development of tailor-made silica fibres for TL dosimetry;Bradley;Radiat. Phys. Chem.,2014
4. Formation mechanism of drawing-induced defects in optical fibers;Hanafusa;J. Non-Cryst. Solids,1987
5. The thermoluminescence response of doped SiO2 optical fibres subjected to photon and electron irradiations;Hashim;Appl. Radiat. Isot.,2009
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2. Impact of dosimeter size on energy dependence: An experimental study on glass TLDs;Radiation Physics and Chemistry;2022-11
3. Photonic crystal fibre as a potential medium for radiotherapy dosimetry;Applied Radiation and Isotopes;2021-08
4. Recent Advances in Silica Glass Optical Fiber for Dosimetry Applications;IEEE Photonics Journal;2020-06
5. Dosimetric characteristics of fabricated Ge-doped silica optical fibre for small-field dosimetry;Results in Physics;2019-03
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