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利用超高能光子校准空气簇射的绝对能量标度的方法。

Method to calibrate the absolute energy scale of air showers with ultrahigh energy photons.

机构信息

University of Siegen, Walter-Flex-Str. 3, 57072 Siegen, Germany and H. Niewodniczański Institute of Nuclear Physics PAN, ul. Radzikowskiego 152, 31-342 Kraków, Poland.

University of Siegen, Walter-Flex-Str. 3, 57072 Siegen, Germany.

出版信息

Phys Rev Lett. 2014 Apr 18;112(15):151104. doi: 10.1103/PhysRevLett.112.151104. Epub 2014 Apr 16.

Abstract

Calibrating the absolute energy scale of air showers initiated by ultrahigh energy (UHE) cosmic rays is an important experimental issue. Currently, the corresponding systematic uncertainty amounts to 14%-21% using the fluorescence technique. Here, we describe a new, independent method which can be applied if ultrahigh energy photons are observed. While such photon-initiated showers have not yet been identified, the capabilities of present and future cosmic-ray detectors may allow their discovery. The method makes use of the geomagnetic conversion of UHE photons (preshower effect), which significantly affects the subsequent longitudinal shower development. The conversion probability depends on photon energy and can be calculated accurately by QED. The comparison of the observed fraction of converted photon events to the expected one allows the determination of the absolute energy scale of the observed photon air showers and, thus, an energy calibration of the air shower experiment. We provide details of the method and estimate the accuracy that can be reached as a function of the number of observed photon showers. Already a very small number of UHE photons may help to test and fix the absolute energy scale.

摘要

校准由超高能 (UHE) 宇宙射线引发的空气簇射的绝对能量标度是一个重要的实验问题。目前,利用荧光技术,相应的系统不确定性达到 14%-21%。在这里,我们描述了一种新的、独立的方法,如果观察到超高能光子,就可以应用该方法。虽然尚未识别出此类光子引发的簇射,但现有和未来的宇宙射线探测器的能力可能允许发现它们。该方法利用 UHE 光子的地磁转换(预簇射效应),这会显著影响随后的纵向簇射发展。转换概率取决于光子能量,并且可以通过 QED 准确计算。将观察到的转换光子事件的分数与预期的分数进行比较,可确定观察到的光子空气簇射的绝对能量标度,并因此对空气簇射实验进行能量校准。我们提供了该方法的详细信息,并根据观察到的光子簇射数量估计了可达到的精度。即使只有少量的 UHE 光子也可能有助于测试和固定绝对能量标度。

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