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A steerable UV laser system for the calibration of liquid argon time projection chambers

机译:可控紫外激光系统,用于校准液氩时间投射室

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摘要

A number of liquid argon time projection chambers (LAr TPCs) are being built or are proposed for neutrino experiments on long- and short baseline beams. For these detectors, a distortion in the drift field due to geometrical or physics reasons can affect the reconstruction of the events. Depending on the TPC geometry and electric drift field intensity, this distortion could be of the same magnitude as the drift field itself. Recently, we presented a method to calibrate the drift field and correct for these possible distortions. While straight cosmic ray muon tracks could be used for calibration, multiple coulomb scattering and momentum uncertainties allow only a limited resolution. A UV laser instead can create straight ionization tracks in liquid argon, and allows one to map the drift field along different paths in the TPC inner volume. Here we present a UV laser feed-through design with a steerable UV mirror immersed in liquid argon that can point the laser beam at many locations through the TPC. The straight ionization paths are sensitive to drift field distortions, a fit of these distortion to the linear optical path allows to extract the drift field, by using these laser tracks along the whole TPC volume one can obtain a 3D drift field map. The UV laser feed-through assembly is a prototype of the system that will be used for the MicroBooNE experiment at the Fermi National Accelerator Laboratory (FNAL).
机译:许多液氩时间投射室(LAr TPC)正在建造中或拟用于长基线和短基线束的中微子实验。对于这些检测器,由于几何或物理原因而导致的漂移场失真会影响事件的重建。根据TPC的几何形状和电漂移场强度,这种失真可能与漂移场本身的大小相同。最近,我们提出了一种校准漂移场并校正这些可能的失真的方法。尽管可以使用直线宇宙射线μ子轨道进行校准,但多重库仑散射和动量不确定性仅允许有限的分辨率。相反,紫外激光可以在液氩中产生直的电离轨迹,并允许人们沿着TPC内部容积中的不同路径绘制漂移场的图。在这里,我们介绍了一种紫外激光馈通设计,该器件具有浸入液态氩中的可操纵紫外镜,该镜可将激光束指向通过TPC的许多位置。直线电离路径对漂移场畸变敏感,这些畸变与线性光路的拟合允许提取漂移场,通过使用沿着整个TPC体积的这些激光轨道,可以获得3D漂移场图。 UV激光直通组件是该系统的原型,将用于费米国家加速器实验室(FNAL)的MicroBooNE实验。

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