论文标题

朝基于电阻板室的便携式高分辨率振荡探测器

Towards a portable high-resolution muon detector based on Resistive Plate Chambers

论文作者

Basnet, S., Gil, E. Cortina, Demin, P., Gamage, R. M. I. D., Giammanco, A., Karnam, R., Moussawi, M., Samalan, A., Tytgat, M.

论文摘要

当面对具有挑战性的物流和限制环境时,传统成像技术的使用变得有问题。特别是,在考古和采矿探索以及核废料表征的领域,这种情况并不罕见。对于这些应用,即使使用混乱的使用也很复杂,因为探测器必须部署在仪器空间有限的困难区域,例如狭窄的隧道。为了解决这一限制,我们已经开发了一种基于玻璃电阻板室(RPC)的便携式muon探测器(MUoscope),其活性面积为16 $ \ times $ 16 cm $^{2} $。在开发我们的第一个原型时,考虑了特定的设计目标是可移植性,鲁棒性,自主性,多功能性,安全性和低成本。为了帮助进一步改善我们的设计目标,我们目前正在研究将敏感单元从旧原型中的条切换到新像素的可能性,但是,对于新的较高的分辨率模拟,每层读数单元的数量也需要大大增加,从而导致MUCoscope的整体成本和功耗增加。为了减轻这些问题,我们正在开发一种新型的2D多路复用算法,用于读取具有单个电子通道的几个像素。在本文中,我们概述了检测器开发,主要关注设计目标和探测器技术的选择。此外,我们介绍了新原型中预期变化的细节以及基于一般原理的模拟2D多路复用研究。

The use of conventional imaging techniques becomes problematic when faced with challenging logistics and confined environments. In particular, such scenarios are not unusual in the field of archaeological and mining explorations as well as for nuclear waste characterization. For these applications, even the use of muography is complicated since the detectors have to be deployed in difficult areas with limited room for instrumentation, e.g., narrow tunnels. To address this limitation, we have developed a portable muon detector (muoscope) based on glass Resistive Plate Chambers (RPC) with an active area of 16 $\times$ 16 cm$^{2}$. The specific design goals taken into consideration while developing our first prototype are portability, robustness, autonomy, versatility, safety and low cost. To help further improve our design goals, we are currently studying the possibility to switch the sensitive units from strips in the old prototype to pixels for the new one However, for performing high resolution muography, the number of readout units per layer will also need to increase significantly, leading to increase in the overall cost and power consumption of the muoscope. To mitigate these issues, we are developing a novel 2D multiplexing algorithm for reading out several pixels with a single electronic channel. In this article, we give an overview of the detector development, focusing mainly on the design goals and the choice of detector technology. Furthermore, we present the details of the expected changes in the new prototype as well as a simulated 2D multiplexing study based on general principles.

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