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Development of a GEM-based time projection chamber prototype for low-energy rare-isotope beam experiments

机译:基于GEM的时间投影室原型的开发,用于低能稀有同位素束实验

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In this study, we developed a time projection chamber (TPC) prototype with gas electron multipliers (GEM) to evaluate the basic performance of the GEM-based TPC for the rare-isotope beam experiments to be conducted at the RAON heavy-ion facility. The TPC prototype has a drift volume of 10 × 10 × 15 cm~3, and we operated it in an Ar/CH_4 gas mixture (90/10). The TPC data acquisition system collected 256 pad signals in full-readout mode using cosmic-ray muons and α particles from an~(241) Am source. The measured spatial resolutions on the pad plane and along the drift direction were 350 μm and 250 μm, respectively. We also discussed the tracking performance of the future active target TPC with a 20 AMeV ~(12)Be beam.
机译:在这项研究中,我们开发了带有气体电子倍增器(GEM)的时间投影室(TPC)原型,以评估基于RAM重离子设施进行的稀有同位素束实验的基于GEM的TPC的基本性能。 TPC原型的漂移量为10×10×15 cm〜3,我们在Ar / CH_4混合气体(90/10)中进行操作。 TPC数据采集系统使用宇宙射线μ子和来自(〜241)Am光源的α粒子,以全读出模式收集了256个填充信号。焊盘平面上和沿漂移方向测得的空间分辨率分别为350μm和250μm。我们还讨论了20 AMeV〜(12)Be光束对未来主动目标TPC的跟踪性能。

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