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首页> 外文期刊>Journal of Applied Physics >The effect of ionizing radiation on the optical properties of NaMgF_3(Mn): Observation of an F-center Mn complex
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The effect of ionizing radiation on the optical properties of NaMgF_3(Mn): Observation of an F-center Mn complex

机译:电离辐射对NaMgF_3(Mn)光学性质的影响:F中心Mn络合物的观察

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摘要

We report the results from optical absorption, photoluminescence, radioluminescence, and optically stimulated luminescence measurements on polycrystalline NaMgF_3(Mn). A point defect that absorbed near 340 nm at 300 K was observed after X-ray irradiation, which is not seen in the pure compound and may be due to self-trapped holes close to the Mn sites. This defect could be optically bleached, and optically stimulated luminescence was observed during the bleaching process. Non-distorted and distorted Mn~(2+) photoluminescence was found where only the non-distorted sites showed optically stimulated luminescence. Both sites displayed radioluminescence, but the dependence on the radiation dose was different for each site. An F-center Mn complex was observed after X-ray irradiation, which has not been previously reported for the NaMgF_3(Mn) compound. The photoluminescence emission at 670 nm from this complex increased with increasing radiation dose and was not bleached by optical excitation at 566 nm. However, it could be bleached after 254 nm excitation. Thus, unlike Mn~(2+) optically stimulated luminescence, the photoluminescence from this emission can be used to provide a non-destructive measure of the radiation dose. Our results show that NaMgF_3(Mn) can potentially be used as a radiation dosimeter for dose-rate monitoring via radioluminescence, continual monitoring of individual doses via F-center Mn complex photoluminescence, and cumulative dose detection via optically stimulated luminescence.
机译:我们报告了对多晶NaMgF_3(Mn)的光吸收,光致发光,放射致发光和光激发发光测量的结果。 X射线照射后观察到在300 K处在340 nm附近吸收的点缺陷,这在纯化合物中看不到,可能是由于靠近Mn位置的自陷孔所致。该缺陷可以被光学漂白,并且在漂白过程中观察到光学激发的发光。 Mn〜(2+)的光致畸变和畸变被发现,只有非畸变的部位显示出光激发的发光。两个位点均显示出放射发光,但是每个位点对辐射剂量的依赖性不同。 X射线照射后观察到一个F中心的Mn络合物,以前尚未报道过NaMgF_3(Mn)化合物。该配合物在670 nm处的光致发光发射随着辐射剂量的增加而增加,并且未被566 nm的光激发所漂白。但是,在254 nm激发后可能会被漂白。因此,与Mn〜(2+)光学激发的发光不同,该发射的光致发光可用于提供辐射剂量的无损测量。我们的结果表明,NaMgF_3(Mn)可以用作辐射剂量计,用于通过放射致发光监测剂量率,通过F中心Mn复合光致发光持续监测单个剂量,以及通过光激发发光进行累积剂量检测。

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  • 来源
    《Journal of Applied Physics 》 |2017年第6期| 063107.1-063107.6| 共6页
  • 作者

    Schuyt J. J.; Williams G. V.M.;

  • 作者单位

    School of Chemical and Physical Sciences, Victoria University of Wellington, P. O. Box 600, Wellington, New Zealand;

    School of Chemical and Physical Sciences, Victoria University of Wellington, P. O. Box 600, Wellington, New Zealand,MacDiarmid Institute for Advanced Materials and Nanotechnology, SCPS, Victoria University of Wellington, P. O. Box 600, Wellington, New Zealand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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