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The stopping rate of negative cosmic-ray muons near sea level

机译:海平面附近的负宇宙射线μ子的停止率

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摘要

A production rate of 0.065 + or - 0.003 Ar-37 atom/kg min of K-39 at 2-mwe depth below sea level was measured by sweeping argon from potassium solutions. This rate is unaffected by surrounding the solution by paraffin and is attributed to negative muon captures and the electromagnetic interaction of fast muons, and not to nucleonic cosmic ray component. The Ar-37 yield from K-39 by the stopping of negative muons in a muon beam of a synchrocyclotron was measured to be 8.5 + or - 1.7%. The stopping rate of negative cosmic ray muons at 2-mwe depth below sea level from these measurements and an estimated 17% electromagnetic production is 0.63 + or - 0.13 muon(-)/kg min. Previous measurements on the muon stopping rate vary by a factor of 5. Our value is slightly higher but is consistent with two previous high values. The sensitivity of the Ar-37 radiochemical method for the detection of muons is considerably higher than that of the previous radiochemical methods and could be used to measure the negative muon capture rates at greater depths.
机译:通过从钾溶液中吹扫氩气,测量了低于海平面2 mwe深度的K-39的生产率为0.065 +或-0.003 Ar-37原子/ kg min。该速率不受石蜡包围溶液的影响,并且归因于负介子捕获和快速介子的电磁相互作用,而不归因于核子宇宙射线分量。通过停止同步回旋加速器的介子束中的负性介子,从K-39产生的Ar-37产率为8.5 +或-1.7%。根据这些测量结果,在低于海平面2 mwe的深度处,负宇宙射线μ子的阻止率,并且估计的17%电磁产生为0.63 +或-0.13μon(-)/ kg min。先前对μon停止率的测量结果相差5倍。我们的值略高,但与先前的两个高值一致。 Ar-37放射化学方法对μ子的检测灵敏度比以前的放射化学方法高得多,可用于测量更大深度的负子捕获率。

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