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Thermoluminescence of chip inductors and resistors in new generation mobile phones for retrospective accident dosimetry

机译:新一代移动电话中芯片电感器和电阻器的热致发光,用于回顾性的事故剂量

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AbstractLuminescence dosimetric properties of inductors and resistors in mobile phones have attracted wide attention for their use in retrospective accident dosimetry. Thermoluminescence (TL) signal following optically stimulated luminescence (OSL) readout, which has been recently shown to be useful for dose re-estimation (Lee et?al., 2016), when measured by a Risoe OSL reader without a Hoya U-340 optical filter, was found to be up to 85 times of that recorded with the Hoya filter (with transmission window 270–380?nm, necessary for recording the usual OSL signal) placed in front of the photomultiplier tube (PMT) in the reader. In view of this, a study of dosimetric TL properties, namely sample-to-sample variation, fading, zero-dose signal, minimum measurable dose, effect of room light, dose response and emission spectrum, was undertaken to explore the use of TL of inductors and resistors in new generation mobile phones for accident dosimetry. The hitherto unknown TL emission spectrum was found to exhibit an intense emission beyond 550?nm (peaking at 700?nm) when recorded in the range from 250?nm to 750?nm. Emission below 500?nm was smaller by orders of magnitude than that at 700?nm. As the TL and OSL signals have been attributed to alumina substrates of inductors and resistors, the TL emission spectrum was compared with that of dosimetry grade Al2O3:C. The emission spectra of inductors and resistors were found to differ significantly, not only from that of Al2O3:C, but also from each other. Although the differences in TL glow curves, optical emission
机译:<![CDATA [ 抽象 移动电话中电感和电阻的发光剂量性能,引起了他们在回顾性事故用量的应用中的广泛关注。在光学刺激的发光(OSL)读数后的热致发光(TL)信号,最近被证明是可用于剂量重新估计(Lee et?Al,2016),当没有Hoya U-340的Risoe OSL读者测量时发现光学滤波器最高可达85倍,其录制为霍卡滤波器(带透射窗口270-380Ω·Nm,记录通常的OSL信号所需的镜头)放置在读取器中的光电倍增管(PMT)的前面。鉴于此,对样品到样品变异,褪色,零剂量信号,最小可测量剂量,室内光,剂量反应和发射光谱的褪色,零剂量信号,效果,探索使用T1的样品 - 样品变异,衰落,零剂量信号,效果新一代手机中的电感器与电阻器,用于事故剂量剂量。迄今未知的TL发射光谱被发现在250ΩNM至750Ω·NM的范围内时,在超过550Ω·NM(700℃时达到峰值)的强烈发射。低于500Ω·Nm的排放量小于数量级,而不是700·nm。随着T1和OSL信号被归因于电感器和电阻器的氧化铝基板,将TL发射光谱与剂量测定级Al 2 O 3 :C。发现电感器和电阻的发射光谱显着差异,不仅仅是从Al 2 O 3 :C,但也来自彼此。虽然TL发光曲线的差异,但光发射

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