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Point light detection with UO_2

机译:用UO_2点光检测

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摘要

UO_2's electrical properties and U's inherently high fission energy release make a UO_2-based direct conversion neutron detector a tantalizing possibility,but the evolution of even rudimentary devices is inhibited by the absence of large,high quality single crystals of UO_2. Hydrothermally grown UO_2 is incorporated into a prototype device here,and laser light is used as a surrogate for neutron-induced fission events. Excitation sources with wavelengths of 325,488,532,and 633 nm are incident on the device for a variety of timescales to test the detection responses,resolution,and saturation behaviors. The non-amplified changes in the current are presented,including when the illumination's diameter,power,and location are altered. Photocurrent changes follow a positively correlated linear trend with power and device efficiency is inversely correlated with illumination wavelength. The impact of illumination time on the detection efficiency is discussed. Illumination event detection is independent of illumination surface area size and largely independent of the illumination location. The ramifications of these results with regard to the development of UO_2 as a neutron detector are considered.
机译:UO_2的电气性能和U固有的高裂变能量释放使得基于UO_2的直接转换中子探测器诱使的可能性,但是通过UO_2的不存在大,高质量的单晶的不存在抑制即使是基本装置的演变。将水热量生长的UO_2结合到此处的原型装置中,并且激光用作中子诱导的裂变事件的替代物。波长为325,488,532和633nm的激励源在设备上入射,用于测试检测响应,分辨率和饱和度行为的各种时间尺寸。提出了电流的未放大变化,包括当照明的直径,功率和位置被改变时。光电流变化遵循带有功率和器件效率的正相关线性趋势与照明波长相反。讨论了照明时间对检测效率的影响。照明事件检测与照明表面积尺寸无关,并且在很大程度上与照明位置无关。考虑了这些结果的后果,关于UO_2作为中子探测器的开发。

著录项

  • 来源
    《Journal of Applied Physics 》 |2021年第7期| 074503.1-074503.11| 共11页
  • 作者单位

    KBR Dayton Ohio 45431 USA;

    KBR Dayton Ohio 45431 USA;

    KBR Dayton Ohio 45431 USA;

    Azimuth Corporation Fairborn Ohio 45324 USA;

    Sensors Directorate Air Force Research Laboratory Wright Patterson AFB Ohio 45433 USA;

    Sensors Directorate Air Force Research Laboratory Wright Patterson AFB Ohio 45433 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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