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Photonuclear and radiation effects testing with a refurbished 20 MeV medical electron linac

机译:翻新的20 MeV医用电子直线加速器进行光核和辐射效应测试

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摘要

An S-band 20 MeV electron linear accelerator formerly used for medical applications has been recommissioned to provide a wide range of photonuclear activation studies as well as various radiation effects on biological and microelectronic systems. Four radiation effect applications involving the electron/photon beams are described. Photonuclear activation of a stable isotope of oxygen provides an active means of characterizing polymer degradation. Biological irradiations of microorganisms including bacteria were used to study total dose and dose-rate effects on survivability and the adaptation of these organisms to repeated exposures. Microelectronic devices including bipolar junction transistors (BJTs) and diodes were irradiated to study photocurrent from these devices as a function of peak dose rate with comparisons to computer modeling results. In addition, the 20 MeV linac may easily be converted to a medium energy neutron source which has been used to study neutron damage effects on transistors.
机译:以前用于医疗应用的S波段20 MeV电子线性加速器已重新投入使用,以提供广泛的光核活化研究以及对生物和微电子系统的各种辐射效应。描述了涉及电子/光子束的四个辐射效应应用。氧的稳定同位素的光核活化提供了表征聚合物降解的有效手段。包括细菌在内的微生物的生物辐照被用于研究总剂量和剂量率对存活率的影响,以及这些生物对反复暴露的适应性。辐射包括双极结型晶体管(BJT)和二极管的微电子器件,以研究这些器件的光电流与峰值剂量率的关系,并与计算机建模结果进行比较。另外,20 MeV直线加速器可以很容易地转换成中能中子源,用于研究中子对晶体管的破坏作用。

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