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Dielectric liquid ionization chambers for detecting fast neutrons

机译:用于检测快中子的介电液体电离室

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摘要

Three ionization chambers with different geometries have been constructed and filled with dielectric liquids for detection of fast neutrons. The three dielectric liquids studied were Tetramethylsilane (TMS), Tetramethylpentane (TMP), and Isooctane, which each have intrinsic properties that make them attractive for fast neutron detection. Their electronic properties are similar to those of condensed noble gases, but they don't require cryogenic temperatures to maintain liquid phase. However, like condensed noble gases, they do require a high level of purity. A stainless steel purification system was constructed to purify the liquids and the purity was monitored by an ionization chamber with a 241Am source inside. The three liquid detectors were exposed to 250keV x-rays from an orthovoltage x-ray tube and neutrons (1.4-12MeV) from a 1-Ci 239Pu-Be source. Experimental data show that an ionization chamber filled with dielectric liquid is capable of detecting fast neutrons in pulse mode. While chamber 1, chamber 2, and chamber 3 (filled with TMS) did not respond to the Pu-Be source, chamber 3 (filled with TMP and Isooctane) successfully detected the presence of neutrons. Data also show that the chambers could not detect gamma rays from 1[mu]Ci Co-60 and Cs-137 check sources. In addition, the chambers could detect 250 keV x-rays in current mode, but not pulse mode. These results present positive implications for the gamma-blindness of the dielectric liquids studied.
机译:已经构造了三个具有不同几何形状的电离室,并填充了电介质液体以检测快速中子。研究的三种介电液体是四甲基硅烷(TMS),四甲基戊烷(TMP)和异辛烷,它们各自具有内在特性,使其对于快速中子检测具有吸引力。它们的电子性质类似于冷凝的稀有气体,但是它们不需要低温即可保持液相。但是,像冷凝的稀有气体一样,它们确实需要高纯度。构建了不锈钢纯化系统以纯化液体,并通过内部带有241Am源的电离室监控纯度。这三个液体探测器暴露于来自正电压X射线管的250keV X射线和来自1-Ci 239Pu-Be辐射源的中子(1.4-12MeV)。实验数据表明,充满电介质液体的电离室能够以脉冲模式检测快中子。尽管腔室1,腔室2和腔室3(充满TMS)对Pu-Be源无反应,腔室3(充满TMP和异辛烷)成功检测到中子的存在。数据还显示,腔室无法检测到来自1μCiCo-60和Cs-137检查源的伽马射线。另外,在当前模式下,但在脉冲模式下,这些腔室可以检测到250 keV X射线。这些结果对所研究的介电液体的伽玛盲性具有积极意义。

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    Boyd Erin M;

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  • 年度 2008
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  • 正文语种 eng
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