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Combined effects of frequency and layer removal on background track characteristics of ECE polycarbonate detectors

机译:频率和层去除对ECE聚碳酸酯探测器背景跟踪特性的综合影响

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摘要

Polycarbonate track detectors (PCTD) when electrochemically etched (ECE) provide excellent characteristics for registering relatively lower-LET charged particles (e.g. alphas, fast-neutron-induced recoils) for many health physics and ion detection applications.The layer removal method of PLIDs by ethylenediamine (EDA) developed in our laboratory reduces the background track (BGT) density significantly. The frequency of the applied electric field strongly affects the BGT density and diameter and thus affects the minimum detection limit (MDL). In order to study the combined effects of the frequency and layer removal on the BGT density and thus on the MDL, this research was conducted. The BGT density versus the layer thickness removed at frequencies up to 12 kHz decrease rapidly to about 10-20 mu m above which they reach a minimum constant level, while the mean BGT diameter verses layer removed at all frequencies are constant with flat responses. On the other hand the BGT density and diameter versus frequency at different layers removed up to similar to 50 mu m increase till 4 kHz above which they reach plateaus. The PCTDs with similar to 20 mu m layer removal at frequencies up 1 to 2 kHz showed the lowest MDL. The results are presented and discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:经电化学蚀刻(ECE)的聚碳酸酯径迹检测器(PCTD)为许多健康物理学和离子检测应用提供了相对较低LET的带电粒子(例如α,快速中子诱发的后坐力)配准的出色特性。我们实验室开发的乙二胺(EDA)大大降低了背景痕迹(BGT)密度。施加电场的频率强烈影响BGT密度和直径,从而影响最小检测极限(MDL)。为了研究频率和层去除对BGT密度进而对MDL的综合影响,进行了这项研究。在高达12 kHz的频率下,BGT密度与所去除的层厚度之间的关系迅速减小至约10-20μm,在此之上,它们达到了最小的恒定水平,而在所有频率下去除的BGT的平均直径与层的平均值在恒定响应下保持恒定。另一方面,BGT密度和直径随频率变化的频率随频率的变化而增加,直到50μm为止,直到4 kHz,然后它们达到平稳。在频率高达1至2 kHz时,具有约20微米层去除能力的PCTD显示出最低的MDL。提出并讨论了结果。 (C)2015 Elsevier Ltd.保留所有权利。

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