d'Errico F, Giusti V, Reginatto M, Wiegel B
Department of Therapeutic Radiology, Yale University School of Medicine, 333 Cedar St, New Haven, CT 06510, USA.
Radiat Prot Dosimetry. 2004;110(1-4):533-7. doi: 10.1093/rpd/nch278.
A directional spectrometer that uses a superheated emulsion of dichlorotetrafluoroethane at the centre of a 30 cm diameter moderating-sphere of nylon-6. The system has a telescope-design wherein the detector views a narrow solid angle of about 1/6 steradians. The hydrogenous sphere effectively attenuates laterally incident neutrons, thus providing a strong angular dependence of the response. The central detector is sequentially operated at seven temperatures between 25 and 55 degrees C in order to generate a matrix of nested response functions suitable for few-channel spectrometry. The response matrix of the system has been determined by calibrations with monoenergetic neutrons and by Monte Carlo neutron transport calculations. The double-differential unfolding method developed for this system applies the principle of maximum entropy and allows for the rigorous use of all a priori information. The spectrometer is intended for use in the mixed neutron/photon fields encountered in the nuclear power industry, being suitable for spatially distributed radiation sources with maximum neutron energies up to 10 MeV.
一种定向光谱仪,它在直径为30厘米的尼龙-6慢化球中心使用过热的二氯四氟乙烷乳剂。该系统采用望远镜设计,其中探测器观察约1/6球面度的窄立体角。含氢球有效地衰减横向入射的中子,从而使响应具有很强的角度依赖性。中央探测器在25至55摄氏度之间的七个温度下顺序运行,以生成适合少道能谱分析的嵌套响应函数矩阵。该系统的响应矩阵已通过单能中子校准和蒙特卡罗中子输运计算确定。为该系统开发的双微分展开方法应用了最大熵原理,并允许严格使用所有先验信息。该光谱仪旨在用于核电工业中遇到的混合中子/光子场,适用于最大中子能量高达10 MeV的空间分布辐射源。