Fabrication and testing of two-dimensional Micro-Edge Gas Chamber (2D-MEGC)

F. Mohammadbaghery, S. Saramad, M. Shamsaei, H. Rahimpour
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Abstract

This work proposes using silver flat ribbon cable to fabricate a new type of position-sensitive gaseous detector. This structure consists of a thin conductive silver of flat ribbon cable (anodes) and thicker copper sheets (cathodes) separated by a plastic insulator. To fix the position of the anodes and the cathodes, a holder compressed the layers. The layers are cut from the edges and polished at several steps to have a smooth surface. These arrays of anodes and cathodes, created by the proposed method, act as a two-dimensional position-sensitive proportional detector. Applying a suitable voltage between the anodes and cathodes produces a strong electric field near the vicinity of the anodes. This electric field multiplies primary electrons generated by ionizing radiation. The experimental results show that for the proposed two Dimensional Micro Edge Gas Chamber (2D-MEGC), at HV1=350 with the gas mixture of (Ar 85% - CO2 15%), the maximum multiplication factor without electric discharge is around 250. All pixels were separately connected to the preamplifier-amplifier setup to test the position sensitivity of 2D-MEGC. As expected for a non-collimated alpha source, the maximum recorded interactions are related to the closest pixel to the radioactive source. The Raether limit is a good benchmark concerning the quality of fabricated gaseous detectors. In the best design conditions, this value for Micro Strip Gas Chamber (MSGCs) is 4 × 107. For the fabricated 2D-MEGC, this number is 2.5 × 107. This result shows that the proposed 2D-MEGC performs well despite its simple structure and fabrication.
二维微边缘气体室(2D-MEGC)的制造与测试
本文提出用银扁带电缆制作一种新型位置敏感气体探测器。这种结构由一层薄的导电银带状电缆(阳极)和由塑料绝缘体隔开的较厚的铜片(阴极)组成。为了固定阳极和阴极的位置,一个支架压缩了这些层。这些层从边缘切割下来,并经过几个步骤抛光,以获得光滑的表面。这些阳极和阴极阵列,由提出的方法,作为一个二维位置敏感的比例探测器。在阳极和阴极之间施加合适的电压,在阳极附近产生一个强电场。这个电场使电离辐射产生的初级电子倍增。实验结果表明,对于所设计的二维微边缘气体室(2D-MEGC),在HV1=350,气体混合物为(Ar 85% - CO2 15%)时,不放电时的最大倍增系数约为250。所有像素分别连接到前置放大器-放大器设置,以测试2D-MEGC的位置灵敏度。对于非准直的α源,最大记录的相互作用与最接近放射源的像素有关。以太极限是衡量气体探测器质量的一个很好的基准。在最佳设计条件下,微带毒气室(msgc)的该值为4 × 107。对于制作的2D-MEGC,该数字为2.5 × 107。结果表明,所提出的2D-MEGC结构简单,制作简单,但性能良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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