2022
DOI: 10.18494/sam3681
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Optical and Optically Stimulated Luminescence Properties of Ce-doped CsCl–CaCl2–ZnCl2 Glasses

Abstract: The optical and optically stimulated luminescence (OSL) properties of Ce-doped 20CsCl-20CaCl 2 -60ZnCl 2 (CCZ) glasses were evaluated. All the Ce-doped CCZ glasses showed a broad emission peak at 370 nm upon excitation at 320 nm, and the decay time suggested that the origin was the 5d-4f transitions of Ce 3+ . After X-ray irradiation, the Ce-doped CCZ glasses showed OSL around 370 nm under stimulation at 400 nm. All the glasses exhibited dose response functions with good linearity in the dynamic range of 0.1-1… Show more

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Cited by 10 publications
(12 citation statements)
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References 41 publications
(44 reference statements)
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“…420 nm) of the x = 0.01 sample was 45.8 ns, which corresponded to a typical value derived from the 5d-4f transitions of Ce 3+ ions. (31)(32)(33) On the other hand, the decay time constants (Ex. 370 nm/Em.…”
Section: Resultsmentioning
confidence: 99%
“…420 nm) of the x = 0.01 sample was 45.8 ns, which corresponded to a typical value derived from the 5d-4f transitions of Ce 3+ ions. (31)(32)(33) On the other hand, the decay time constants (Ex. 370 nm/Em.…”
Section: Resultsmentioning
confidence: 99%
“…(4) Because the physical and chemical properties of each scintillator are different, the most suitable one is selected on the basis of the requirements of the application. Various material forms have been used as scintillators, such as crystals, (5)(6)(7)(8)(9) ceramics, (10,11) glasses, (12)(13)(14) and liquids. (15)(16)(17)(18) To date, scintillators emitting UV-visible photons have been mainly studied because they have been used in combination with photodetectors having wavelength sensitivity in the UV-visible ranges (19) such as photomultiplier tubes (PMTs) and Si photodiodes (PDs).…”
Section: Introductionmentioning
confidence: 99%
“…Scintillators convert ionizing radiation into visible-UV photons, and they have been widely utilized to measure ionizing radiation in the fields of security, (1) medical imaging, (2,3) and resource exploration. (4,5) In general, required properties of scintillators include high scintillation output, short decay time, high energy resolution, and high effective atomic number; however, since no materials currently satisfy the requirements of all applications, R&D has been performed continuously on scintillators in various forms such as single crystals, (6)(7)(8)(9)(10)(11) ceramics, (12)(13)(14) films, (15,16) glasses, (17)(18)(19)(20)(21)(22)(23) and liquids. (24)(25)(26) Our research has focused on rare-earth-activated alkali-earth aluminates, which have been intensely studied in phosphor fields (27)(28)(29) ; in particular, Eu,Dy-co-doped SrAl 2 O 4 is a wellknown long-lifetime phosphorescent material.…”
Section: Introductionmentioning
confidence: 99%