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Project of Neutron Beta-Decay A-Asymmetry Measurement With Relative Accuracy of (1–2)×10−3

机译:相对精度为(1-2)×10-3的中子β-衰变A不对称测量项目

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摘要

We are going to use a polarized cold neutron beam and an axial magnetic field in the shape of a bottle formed by a superconducting magnetic system. Such a configuration of magnetic fields allows us to extract the decay electrons inside a well-defined solid angle with high accuracy. An electrostatic cylinder with a potential of 25 kV defines the detected region of neutron decays. The protons, which come from this region will be accelerated and registered by a proton detector. The use of coincidences between electron and proton signals will allow us to considerably suppress the background. The final accuracy of the A-asymmetry will be determined by the uncertainty of the neutron beam polarization measurement which is at the level of (1–2) × 10−3, as shown in previous studies.
机译:我们将使用极化的冷中子束和由超导磁系统形成的呈瓶状的轴向磁场。磁场的这种配置使我们能够高精度地提取定义明确的立体角内的衰变电子。电位为25 kV的静电圆柱体定义了检测到的中子衰变区域。来自该区域的质子将被质子探测器加速并记录。电子和质子信号之间的重合的使用将使我们能够大大抑制背景。如先前的研究所示,A不对称的最终精度将由中子束极化测量的不确定度确定,不确定度为(1-2)×10 -3

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