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Electrochemical etching processes for the detection of neutrons and radon-decay products

机译:用于检测中子和ra衰变产物的电化学蚀刻工艺

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The electrochemical etching, because of its complexity, is of interest when it makes it possible to achieve detection characteristics which are not encountered with the chemical etching. These unique characteristics can be found for example for the personal dosimetry of low-energy neutrons around nuclear reactors and for the detection of both low- and high-energy cosmic-ray neutrons at civil aviation altitudes. In particular sufficiently large signal-to-noise ratios for cosmic ray neutron measurements can be achieved by using stack of polycarbonate- and/or CR-39-detectors, since the electrochemical etching processes make it possible: (a) the rapid scanning of large detector areas, and (b) the counting of coincidence events in paired detectors induced by a-few-microns long tracks. The detection of the radon decay products is hindered by the fact that their concentrations are altered in the vicinity of detector surface during the measurement. Polycarbonate detectors may be useful in solving these problems both because they register radon-decay products far away from the plated-out surface and they can be manufactured with any possible geometry and/or shape. However, it is possible to use several combinations of chemical and electrochemical etching steps which implies the possibility of new applications of track detectors for the registration of neutrons, cosmic rays and radon decay products.
机译:由于电化学蚀刻的复杂性,当它有可能实现化学蚀刻所没有的检测特性时,就引起了人们的关注。这些独特的特性例如可用于核反应堆周围的低能中子的个人剂量测定以及民用航空高度处的低能和高能宇宙射线中子的检测。特别是,通过使用聚碳酸酯和/或CR-39检测器的堆叠,可以实现用于宇宙射线中子测量的足够大的信噪比,因为电化学蚀刻工艺使得:(a)快速扫描大型检测器区域,以及(b)对由几微米长的轨道引起的配对检测器中的重合事件计数。 ra衰变产物的检测由于在测量过程中其浓度在检测器表面附近发生变化而受到阻碍。聚碳酸酯检测器在解决这些问题方面可能是有用的,这是因为它们记录了远离电镀表面的ra衰变产物,并且可以以任何可能的几何形状和/或形状来制造它们。然而,可以使用化学和电化学蚀刻步骤的几种组合,这暗示了轨道探测器在中子,宇宙射线和ra衰变产物配准方面的新应用的可能性。

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