论文标题

杂种电阻板室的发展

Development of Hybrid Resistive Plate Chambers

论文作者

Tosun, Mehmet, Bilki, Burak, Sahbaz, Kutlu Kagan

论文摘要

电阻板室(RPC)是大规模实验的必不可少的活动培养基,这是MUON系统和(半)数字黑积木量热量表的一部分。在与RPC相关的几个未出现的问题中,可以列出与颗粒通量高的颗粒检测效率的丧失,并且可以列出与常见RPC气体相关的局限性。为了解决后一个问题,我们开发了新颖的RPC设计,并使用特殊的阳极板涂有高次级电子发射屈服材料,例如Al $ _2 $ o $ $ _3 $和TIO $ _2 $。为各种设计获得了原理证明,其余的原则正在进行中。这个想法是根据有关新型1玻璃RPC的发展的成就开始的。 在这里,我们报告了各种不同RPC设计的构建及其在实验室测试和粒子梁中的性能测量。并讨论未来的测试计划。

Resistive Plate Chambers (RPCs) are essential active media of large-scale experiments as part of the muon systems and (semi-)digital hadron calorimeters. Among the several outstanding issues associated with the RPCs, the loss of efficiency for the detection of particles when subjected to high particle fluxes, and the limitations associated with the common RPC gases can be listed. In order to address the latter issue, we developed novel RPC designs with special anode plates coated with high secondary electron emission yield materials such as Al$_2$O$_3$ and TiO$_2$. The proof of principle was obtained for various designs and is in progress for the rest. The idea was initiated following the achievements on the development of the novel 1-glass RPCs. Here we report on the construction of various different RPC designs, and their performance measurements in laboratory tests and with particle beams; and discuss the future test plans.

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