论文标题
在核乳液检测器中使用多个库仑散射对带电颗粒的动量重建
Momentum reconstruction of charged particles using multiple Coulomb scatterings in a nuclear emulsion detector
论文作者
论文摘要
本文介绍了一种使用核乳液膜和靶材料的分层结构中的多个库仑散射在核乳液检测器中使用多个库仑散射重建的新方法。该方法利用精确测量乳液膜中的颗粒的散射角度。该方法基于最大的可能性,包括新的信息,包括粒子通过检测器传播时能量减少的信息。根据蒙特卡洛模拟,该方法可以测量500 meV/c通过检测器垂直于探测器的MUON的分辨率为10%的动量。取决于粒子的动量和发射角度,将动量分辨率评估为10-20%。通过计算能量降低的影响,可以正确地重建动量,尤其是在低弹药区域中。我们应用这种方法来测量在忍者实验中检测到的MUON轨迹的动量,在忍者实验中,还可以使用轨道范围独立测量动量。这两个测量值在实验不确定性中吻合良好,从而通过实验验证该方法。该方法将在忍者实验中扩展MUON和HADRON的可测量相空间。
This paper describes a new method for momentum reconstruction of charged particles using multiple Coulomb scatterings in a nuclear emulsion detector with a layered structure of nuclear emulsion films and target materials. The method utilizes the scattering angles of particles precisely measured in the emulsion films. The method is based on the maximum likelihood to newly include information on the decrease of the energy as the particle travels through the detector. According to the Monte Carlo simulations, this method can measure momentum with a resolution of 10% for muons of 500 MeV/c passing through the detector perpendicularly. The momentum resolution is evaluated to be 10-20%, depending on the momentum and emission angle of the particle. By accounting for the effect of the energy decrease, the momentum can be reconstructed correctly with less bias, particularly in the low-momentum region. We apply this method to measure the momentum of muon tracks detected in the NINJA experiment where the momentum is also measured independently by using the track range. The two measurements agree well within experimental uncertainties, verifying the method experimentally. This method will extend the measurable phase space of muons and hadrons in the NINJA experiment.