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首页> 外文期刊>Journal of Applied Physics >Thermoluminescence and phototransferred thermoluminescence dosimetry on mobile phone protective touchscreen glass
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Thermoluminescence and phototransferred thermoluminescence dosimetry on mobile phone protective touchscreen glass

机译:手机保护触摸屏玻璃上的热致发光和光转移热致发光剂量

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摘要

Thermoluminescence and phototransferred thermoluminescence measurements of protective glass from smartphones are described. Samples of Gorilla Glass were examined from nine different manufacturers and 40 different phone models. Additionally, 12 glasses believed to be original equipment manufacturer replacements, as well as three glass samples from U.S. finishers, were also studied. Altogether, 99 different Gorilla Glass samples were examined. The radiation-induced thermoluminescence signal produced glow curve shapes specific to the Gorilla Glass generations and could be used to distinguish between them. A background thermoluminescence (and phototransferred thermoluminescence) signal was found in all unirradiated samples. Its intensity and shape were found to be dependent on the Gorilla Glass generation, phone manufacturer, and phone model. The background signal was demonstrated to be produced by ultraviolet light exposure; the shape of the background signal was able to be reproduced by the combined exposure to a broad-spectrum solar simulator and a 302 nm ultraviolet light source. The background signal intensity was found to vary with the location from which it was taken on the glass. It was also found to be dependent on the depth within the Gorilla Glass due to absorption of the ultraviolet light as it traversed the medium. Removal of the glasses' surface layers was found to be an inadequate method for removing the background signal. In some samples, the background signal intensity was large enough to significantly contribute to the total thermoluminescence (and phototransferred thermoluminescence) signal; therefore, a matrix deconvolution method was introduced to separate the background signal and radiation-induced signal. This method was found to enable dose reconstruction using the radiation-induced signal alone. Published under license by AIP Publishing.
机译:描述了来自智能手机的保护玻璃的热致发光和光转移热致发光测量。检查了来自9家不同制造商和40种不同手机型号的大猩猩玻璃样品。此外,还研究了12种被认为是原始设备制造商替代品的玻璃,以及3个来自美国修整厂的玻璃样品。总共检查了99个不同的大猩猩玻璃样品。辐射诱导的热致发光信号产生了大猩猩玻璃世代特有的辉光曲线形状,可以用来区分它们。在所有未辐照样品中发现了背景热致发光(和光传递的热致发光)信号。发现其强度和形状取决于大猩猩玻璃的一代,手机制造商和手机型号。已证明背景信号是由紫外线照射产生的;通过同时暴露于广谱太阳模拟器和302 nm紫外光源,可以再现背景信号的形状。发现背景信号强度随其在玻璃上的拍摄位置而变化。还发现它取决于大猩猩玻璃内的深度,这是因为紫外线穿过介质时会被吸收。发现去除眼镜的表面层是去除背景信号的不足方法。在某些样品中,背景信号强度足够大,足以显着影响总的热致发光(和光传递的热致发光)信号。因此,引入了矩阵反卷积方法来分离背景信号和辐射诱导信号。发现该方法能够仅使用辐射诱导的信号来重建剂量。由AIP Publishing授权发布。

著录项

  • 来源
    《Journal of Applied Physics 》 |2019年第7期| 074901.1-074901.12| 共12页
  • 作者单位

    Univ Tennessee Dept Nucl Engn Inst Nucl Secur Knoxville TN 37996 USA;

    Oklahoma State Univ Dept Phys Radiat Dosimetry Grp Stillwater OK 74074 USA;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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