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首页> 外文期刊>Radiation measurements >Study of effect of mechanical deformation on thermoluminescence of gamma-ray-irradiated Dy doped MgSO _4 phosphors (Conference Paper)
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Study of effect of mechanical deformation on thermoluminescence of gamma-ray-irradiated Dy doped MgSO _4 phosphors (Conference Paper)

机译:机械变形对γ射线辐照的掺Dy的MgSO _4荧光粉热致发光的影响研究(会议论文)

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摘要

In order to find the mechanical stability of traps/luminescence centers responsible for TL in MgSO _4:Dy system, effect of deformation on TL of MgSO _4:Dy was studied. TL glow curve of MgSO _4:Dy phosphor is complex and peaks around 110, 150 and 220 °C were observed. Optimum TL was obtained for the sample having 0.1 mol% concentration of Dy in MgSO _4 system. Slight increase in intensity of 110 °C peak was observed when the TL glow curve was recorded after deforming the irradiated samples by dropping a piston of mass 0.4 kg onto it from the height of 0.2 m. Further increasing the height from which the piston was being dropped TL peak intensity of 110 °C decreased. However, 150 °C and 220 °C TL peak intensity decreased with deformation. Result showed that trap centers associated with 150 °C and nearby TL peaks were most mechanically unstable. TL spectrum of MgSO _4:Dy phosphors was also recorded. Two peaks one at 490 nm and another at 590 nm were observed. In the TL emission spectra recorded for deformed samples, no significant change was seen in the peak positions. However, peak intensity was reduced. It is suggested that the recombination of electrons released from the traps during the thermal excitation is responsible for the TL emission in this system. It seems that in MgSO _4:Dy system deformation does not cause any appreciable change in the recombination mechanism, it causes redistribution of traps and therefore change in relative TL intensity occurs in the same spectral region.
机译:为了找到负责MgSO_4:Dy系统中TL的陷阱/发光中心的机械稳定性,研究了变形对MgSO_4:Dy TL的影响。 MgSO _4:Dy荧光粉的TL辉光曲线很复杂,在110、150和220°C附近观察到峰。对于在MgSO_4系统中具有0.1 mol%Dy浓度的样品,获得了最佳TL。通过将质量为0.4 kg的活塞从0.2 m的高度放下,使辐照的样品变形后,记录TL辉光曲线时,观察到110℃峰值强度略有增加。进一步降低了活塞下落的高度,降低了110°C的TL峰强度。但是,150°C和220°C TL峰强度随变形而降低。结果表明,与150°C和附近的TL峰相关的陷阱中心在机械上最不稳定。还记录了MgSO 4:Dy磷光体的TL光谱。观察到两个峰,一个在490 nm,另一个在590 nm。在记录的变形样品的TL发射光谱中,峰位置未见明显变化。但是,峰强度降低了。建议在热激发过程中从阱中释放出的电子复合是该系统中TL发射的原因。似乎在MgSO _4:Dy系统中,变形不会引起重组机理的任何明显变化,它会导致陷阱的重新分布,因此在同一光谱区域中发生相对TL强度的变化。

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