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Techniques developed for the ATLAS Thin Gap Chambers mass production in Japan

机译:为日本ATLAS薄间隙腔室量产而开发的技术

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摘要

The Thin Gap Chambers (TGCs) are used for the muon trigger system in the end-cap regions of the ATLAS detector. The TGC mass production phase at High Energy Accelerator Research Organization (KEK) started in January 2001. As the anode-cathode distance is small, 1.4 mm, chamber flatness is essential to achieve a uniform gas gain over the chamber. In order to perform a stable production with high quality we developed a chamber closing system. When we glue two half-chambers together, we sandwich them between a granite table and an aluminum honeycomb panel to keep the chamber flat from both sides. By using silk screens, we control the quantity of epoxy adhesive that affects the chamber thickness. Due to these developments, we can achieve the flatness of less than 100 µm. Uniformity of detection efficiency of the TGC is measured with a cosmic-ray test bench at Kobe University. So far we have tested 300 TGCs. Position dependence of the efficiency is measured with a granularity of 5mm-by-5mm. The average efficiency over the tested chambers is achieved to be 99 % excluding the wire supports and spacers.
机译:薄间隙腔(TGC)用于ATLAS探测器端盖区域中的μ子触发系统。高能加速器研究组织(KEK)的TGC批量生产阶段于2001年1月开始。由于阳极到阴极的距离很小(1.4毫米),所以要获得均匀的腔内气体增益,腔室的平坦度至关重要。为了进行高质量的稳定生产,我们开发了一个密闭系统。当我们将两个半腔室粘合在一起时,我们将它们夹在花岗岩台面和铝蜂窝板之间,以使腔室的两侧保持平坦。通过使用丝网,我们可以控制影响腔室厚度的环氧胶的数量。由于这些进展,我们可以实现小于100 µm的平面度。用神户大学的宇宙射线试验台测量TGC的检测效率的均匀性。到目前为止,我们已经测试了300个TGC。效率的位置依赖性是通过5mm x 5mm的粒度来测量的。除导线支架和垫片外,整个测试腔室的平均效率达到99%。

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