Addressing Current Challenges in OSL Dosimetry Using MgB[sub.4]O[sub.7]:Ce,Li: State of the Art, Limitations and Avenues of Research
The objective of this work is to review and assess the potential of MgB[sub.4]O[sub.7]:Ce,Li to fill in the gaps where the need for a new material for optically stimulated luminescence (OSL) dosimetry has been identified. We offer a critical assessment of the operational properties of MgB[sub.4]O[su...
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creator | Bossin, Lily Plokhikh, Igor Christensen, Jeppe Brage Gawryluk, Dariusz Jakub Kitagawa, Yuuki Leblans, Paul Tanabe, Setsuhisa Vandenbroucke, Dirk Yukihara, Eduardo Gardenali |
description | The objective of this work is to review and assess the potential of MgB[sub.4]O[sub.7]:Ce,Li to fill in the gaps where the need for a new material for optically stimulated luminescence (OSL) dosimetry has been identified. We offer a critical assessment of the operational properties of MgB[sub.4]O[sub.7]:Ce,Li for OSL dosimetry, as reviewed in the literature and complemented by measurements of thermoluminescence spectroscopy, sensitivity, thermal stability, lifetime of the luminescence emission, dose response at high doses (>1000 Gy), fading and bleachability. Overall, compared with Al[sub.2]O[sub.3]:C, for example, MgB[sub.4]O[sub.7]:Ce,Li shows a comparable OSL signal intensity following exposure to ionizing radiation, a higher saturation limit (ca 7000 Gy) and a shorter luminescence lifetime (31.5 ns). MgB[sub.4]O[sub.7]:Ce,Li is, however, not yet an optimum material for OSL dosimetry, as it exhibits anomalous fading and shallow traps. Further optimization is therefore needed, and possible avenues of investigation encompass gaining a better understanding of the roles of the synthesis route and dopants and of the nature of defects. |
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We offer a critical assessment of the operational properties of MgB[sub.4]O[sub.7]:Ce,Li for OSL dosimetry, as reviewed in the literature and complemented by measurements of thermoluminescence spectroscopy, sensitivity, thermal stability, lifetime of the luminescence emission, dose response at high doses (>1000 Gy), fading and bleachability. Overall, compared with Al[sub.2]O[sub.3]:C, for example, MgB[sub.4]O[sub.7]:Ce,Li shows a comparable OSL signal intensity following exposure to ionizing radiation, a higher saturation limit (ca 7000 Gy) and a shorter luminescence lifetime (31.5 ns). MgB[sub.4]O[sub.7]:Ce,Li is, however, not yet an optimum material for OSL dosimetry, as it exhibits anomalous fading and shallow traps. Further optimization is therefore needed, and possible avenues of investigation encompass gaining a better understanding of the roles of the synthesis route and dopants and of the nature of defects.</description><identifier>ISSN: 1996-1944</identifier><identifier>EISSN: 1996-1944</identifier><identifier>DOI: 10.3390/ma16083051</identifier><language>eng</language><publisher>MDPI AG</publisher><ispartof>Materials, 2023-04, Vol.16 (8)</ispartof><rights>COPYRIGHT 2023 MDPI AG</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids></links><search><creatorcontrib>Bossin, Lily</creatorcontrib><creatorcontrib>Plokhikh, Igor</creatorcontrib><creatorcontrib>Christensen, Jeppe Brage</creatorcontrib><creatorcontrib>Gawryluk, Dariusz Jakub</creatorcontrib><creatorcontrib>Kitagawa, Yuuki</creatorcontrib><creatorcontrib>Leblans, Paul</creatorcontrib><creatorcontrib>Tanabe, Setsuhisa</creatorcontrib><creatorcontrib>Vandenbroucke, Dirk</creatorcontrib><creatorcontrib>Yukihara, Eduardo Gardenali</creatorcontrib><title>Addressing Current Challenges in OSL Dosimetry Using MgB[sub.4]O[sub.7]:Ce,Li: State of the Art, Limitations and Avenues of Research</title><title>Materials</title><description>The objective of this work is to review and assess the potential of MgB[sub.4]O[sub.7]:Ce,Li to fill in the gaps where the need for a new material for optically stimulated luminescence (OSL) dosimetry has been identified. 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We offer a critical assessment of the operational properties of MgB[sub.4]O[sub.7]:Ce,Li for OSL dosimetry, as reviewed in the literature and complemented by measurements of thermoluminescence spectroscopy, sensitivity, thermal stability, lifetime of the luminescence emission, dose response at high doses (>1000 Gy), fading and bleachability. Overall, compared with Al[sub.2]O[sub.3]:C, for example, MgB[sub.4]O[sub.7]:Ce,Li shows a comparable OSL signal intensity following exposure to ionizing radiation, a higher saturation limit (ca 7000 Gy) and a shorter luminescence lifetime (31.5 ns). MgB[sub.4]O[sub.7]:Ce,Li is, however, not yet an optimum material for OSL dosimetry, as it exhibits anomalous fading and shallow traps. Further optimization is therefore needed, and possible avenues of investigation encompass gaining a better understanding of the roles of the synthesis route and dopants and of the nature of defects.</abstract><pub>MDPI AG</pub><doi>10.3390/ma16083051</doi></addata></record> |
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title | Addressing Current Challenges in OSL Dosimetry Using MgB[sub.4]O[sub.7]:Ce,Li: State of the Art, Limitations and Avenues of Research |
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