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Minimizing distortions with sectored GEM electrodes

机译:扇形GEM电极最大程度地减少了变形

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摘要

Electrode sectorization is an important design principle for large area GEM based detectors. It reduces the energy of discharges and permits to disconnect defective or shorted sectors, but induces a local signal distortion and a potential efficiency loss. We implemented and evaluated a new design approach for the insulating gaps between electrode sectors, to minimize or mitigate distortions and dead regions. By preserving the hole pattern of GEMs even in the insulating region between electrode sectors, the response of the detector in these regions was partly recovered resulting in reduced distortions. Single-side sectored GEMs were optically read out to study the influence of different sectorization patterns. Recorded images show a clear improvement with full holes both aligned with the rows and with a random alignment as compared to the traditional blank insulating strip between sectors. A sectored GEM manufactured on a substrate coated with a resistive DLC layer was evaluated and shown to minimize distortions. The investigated sectorization patterns provide a way of recovering signals in the insulating or resistive regions between sectors in GEM-based detectors.
机译:电极分区是大面积基于GEM的探测器的重要设计原理。它降低了放电能量,并允许断开有缺陷或短路的扇区,但会引起局部信号失真和潜在的效率损失。我们针对电极扇区之间的绝缘间隙实施并评估了一种新的设计方法,以最小化或减轻变形和死区。通过甚至在电极扇区之间的绝缘区域中保留GEM的孔图案,部分恢复了这些区域中检测器的响应,从而减少了失真。光学读取单面扇形创业板,以研究不同扇形化模式的影响。与扇区之间的传统空白绝缘条相比,记录的图像显示出与行对齐且具有随机对齐的完整孔的明显改善。对涂有电阻性DLC层的基板上制造的扇形GEM进行了评估,并显示其最小化了变形。研究的扇区划分模式提供了一种在基于GEM的检测器中的扇区之间的绝缘或电阻性区域中恢复信号的方式。

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