论文标题
高压气体时间投影室的CERN T10梁的外轴表征对低动量质子测量
Off-Axis Characterisation of the CERN T10 Beam for low Momentum Proton Measurements with a High Pressure Gas Time Projection Chamber
论文作者
论文摘要
我们介绍了CERN T10梁线中质子通量的研究。原型高压气体时间投影室(TPC)使用T10中的0.8 GEV/C动量设置暴露于质子和其他颗粒的光束,以进行氩气中低能质子的横截面测量。 To explore the energy region comparable to hadrons produced by GeV-scale neutrino interactions at oscillation experiments, i.e., near 0.1 GeV of kinetic energy, methods of moderating the T10 beam were employed: the dual technique of moderating the beam with acrylic blocks and measuring scattered protons off the beam axis was used to decrease the kinetic energy of incident protons, as well as change the proton/minimum入射通量的电离粒子(MIP)组成。使用TPC上游和下游的飞行系统的时间进行梁特性的测量。达到TPC的质子的动能从没有主持人块的$ \ sim0.3 $ GEV更改为带有四个主持人块(40 cm路径长度)的0.1 GEV。质子和MIP的通量从梁轴上增加。质子与MIP的比率随离轴角的函数而变化,从而可以优化检测器选择所需颗粒的类型。飞行测量时告知的仿真表明,在光束线中放置了四个主持人块,($ 5.6 \ pm 0.1 $)质子,能量低于0.1 GEV,每个溢出物都会遍历活跃的TPC区域。提出了梁组成和能量的测量。
We present studies of proton fluxes in the T10 beamline at CERN. A prototype high pressure gas time projection chamber (TPC) was exposed to the beam of protons and other particles, using the 0.8 GeV/c momentum setting in T10, in order to make cross section measurements of low energy protons in argon. To explore the energy region comparable to hadrons produced by GeV-scale neutrino interactions at oscillation experiments, i.e., near 0.1 GeV of kinetic energy, methods of moderating the T10 beam were employed: the dual technique of moderating the beam with acrylic blocks and measuring scattered protons off the beam axis was used to decrease the kinetic energy of incident protons, as well as change the proton/minimum ionising particle (MIP) composition of the incident flux. Measurements of the beam properties were made using time of flight systems upstream and downstream of the TPC. The kinetic energy of protons reaching the TPC was successfully changed from $\sim0.3$ GeV without moderator blocks to less than 0.1 GeV with four moderator blocks (40 cm path length). The flux of both protons and MIPs off the beam axis was increased. The ratio of protons to MIPs vary as a function of the off-axis angle allowing for possible optimisation of the detector to select the type of required particles. Simulation informed by the time of flight measurements show that with four moderator blocks placed in the beamline, ($5.6 \pm 0.1$) protons with energies below 0.1 GeV per spill traversed the active TPC region. Measurements of the beam composition and energy are presented.