1998
DOI: 10.1016/s1350-4487(98)00017-1
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Excitonic and recombination processes in CaWO4 and CdWO4 scintillators under synchrotron irradiation

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Cited by 81 publications
(35 citation statements)
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“…The former result is compatible with our interpretation that the lowest broad band 1 originates from the JDOS rather than the exciton transition. For the latter, we notice the paper by Nagirnyi et al [27]. They pointed out that the excitation thresholds of TL in CdWO 4 , MgWO 4 , and CaWO 4 coincide with the energies of the interband transitions in the corresponding metal oxides (CdO, MgO and CaO).…”
Section: Original Papermentioning
confidence: 70%
See 1 more Smart Citation
“…The former result is compatible with our interpretation that the lowest broad band 1 originates from the JDOS rather than the exciton transition. For the latter, we notice the paper by Nagirnyi et al [27]. They pointed out that the excitation thresholds of TL in CdWO 4 , MgWO 4 , and CaWO 4 coincide with the energies of the interband transitions in the corresponding metal oxides (CdO, MgO and CaO).…”
Section: Original Papermentioning
confidence: 70%
“…They pointed out that the excitation thresholds of TL in CdWO 4 , MgWO 4 , and CaWO 4 coincide with the energies of the interband transitions in the corresponding metal oxides (CdO, MgO and CaO). From such coincidences, it was claimed that free carriers responsible for TL are created by the photo-excitation to the metal states in these tungstates [27,28]. When an electron is excited to the 5d state of W ions composing a WO 4 2-molecule, it will quickly recombine with a hole on the O site before migrating to trap centers and cannot contribute to TL.…”
Section: Original Papermentioning
confidence: 99%
“…Whereas the forbidden gap in CWO was estimated to be > 5.2 eV [5], the fundamental absorption edge tail due to oxygen deficient states or exciton states was observed at lower . energies (Fig.…”
Section: Resultsmentioning
confidence: 96%
“…Nanocrystalline CaWO 4 has attracted particular interest because of its practical applications, such as laser host materials in quantum electronics and scintillators in medical devices [1][2][3][4][5][6]. It has been reported that CaWO 4 of scheelite-like structures is an excellent blue-emitting phosphor by their radiation of ultraviolet (UV) light [7].…”
Section: Introductionmentioning
confidence: 99%