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Background Simulation of a Fission Fragment Chamber in the Experiment of 209^Bi(e, e'K^+)209^hPb

机译:209 ^ Bi(e,e′K ^ +)209 ^ hPb实验中裂变碎片室的背景模拟

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An experiment for measuring the hyperon-related fission rate was carried out with the reaction 209^Bi(e, e'K^+)209^hPb at the Thomas Jefferson National Laboratory (Jlab). In the experiment, the performance of the fission fragment detector (FFD) was dramaticlly crashed by the background particles in comparison with that during the test without beam. The scattering of the high intensity (500 nA) primary electrons was the dominant cause. Using the GEANT4 toolkit, this report simulates the experimental situation of the target chamber in which the FFD was located. The simulation results indicate that the background particles were dominantly (~ electrons, and protons and alpha particles were the important heavy background particles. The performance of the multi-wire proportional chambers (MWPCs) depends not only on the background-particle intensity but also the current density, which was also given by the simulation code. Furthermore, the measures to suppress the background particles were also investigated with the simulation code.
机译:在托马斯·杰斐逊国家实验室(Jlab)以209 ^ Bi(e,e′K ^ +)209 ^ hPb反应进行了与超子有关的裂变率的测量实验。在实验中,与没有光束的测试相比,裂变碎片检测器(FFD)的性能被背景粒子严重破坏。高强度(500 nA)一次电子的散射是主要原因。该报告使用GEANT4工具包模拟了FFD所在目标室的实验情况。仿真结果表明,背景粒子以电子为主,质子和α粒子是重要的重质背景粒子。多线比例腔室(MWPC)的性能不仅取决于背景粒子强度,还取决于电流密度,这也由仿真代码给出。此外,还使用模拟代码研究了抑制背景粒子的措施。

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