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Most probable trajectory of a muon in a scattering medium, when input and output trajectories are known

机译:当输入和输出轨迹已知时,μ子在散射介质中的最可能轨迹

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Tomographic imaging using cosmic ray muons has a range of applications including homeland security and geological imaging. To this end, we have developed a technique to calculate the most probable muon trajectory through a scattering material, given its measured entry and exit trajectories. This method has the potential to improve tomographic algorithms, in particular by replacing the muon paths assumed by the Point Of Closest Approach (POCA) method, with more realistic paths. These paths can be calculated for arbitary matter distributions, rather than just the point scatterers assumed by POCA.
机译:使用宇宙射线μ子的层析成像技术具有一系列应用,包括国土安全和地质成像。为此,我们开发了一种技术,该技术可以计算通过散射材料的最可能的μ子轨迹,并给出其测量的进入和离开轨迹。该方法具有改进层析成像算法的潜力,特别是通过使用更逼真的路径替换最近点法(POCA)方法假定的介子路径。这些路径可以针对任意物质分布进行计算,而不仅仅是POCA假定的点散射体。

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