The HL-LHC phase is designed to increase by an order of magnitude the amount of data to be collected by the LHC experiments. To achieve this goal in a reasonable time scale the instantaneous luminosity would also increase by an order of magnitude up to $6 \cdot 10^{34}$ cm$^{-2}$s$^{-1}$. The region of the forward muon spectrometer ($|\eta| > 1.6$) is not equipped with RPC stations. The increase of the expected particles rate up to 2 kHz/cm$^2$ ( including a safety factor 3 ) motivates the installation of RPC chambers to guarantee redundancy with the CSC chambers already present. The actual RPC technology of CMS cannot sustain the expected background level. A new generation Glass-RPC (GRPC) using low resistivity glass (LR) is proposed to equip at least the two most far away of the four high eta muon stations of CMS. The design of small size prototypes and the studies of their performances under high rate particles flux is presented.
翻译:HL-LHC阶段旨在以一定数量增加LHC实验所要收集的数据数量。为了在合理的时间范围内实现这一目标,即时光度也会增加,数量级将达到6 美元,即10 ⁇ 34 美元,即1 美元,即1 美元,即1 美元。远兆子光谱仪区域没有安装RPC台站。预期粒子率增加至2 kHz/cm2美元(包括一个安全系数 3 ),这促使RPC室的安装,以保证与已经存在的CSC室的冗余。CMS的实际RPC技术无法维持预期的背景水平。建议使用低抗力玻璃(LR)的新一代Glas-RPC(GPC)至少安装CMS四个高振动粒变电站最远的两台。介绍了小型原型的设计及其在高振动粒变波下的表现研究。