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THE SUPERTIGER INSTRUMENT: MEASUREMENT OF ELEMENTAL ABUNDANCES OF ULTRA-HEAVY GALACTIC COSMIC RAYS

机译:超级仪器:超重银河宇宙射线元素丰度的测量

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The SuperTIGER (Super Trans-Iron Galactic Element Recorder) instrument was developed to measure the abundances of galactic cosmic-ray elements from 10Ne to 40Zr with individual element resolution and the high statistics needed to test models of cosmic-ray origins. SuperTIGER also makes exploratory measurements of the abundances of elements with 40? Z?≤ 60 and measures the energy spectra of the more abundant elements for Z?≤ 30 from about 0.8 to 10?GeVucleon. This instrument is an enlarged and higher resolution version of the earlier TIGER instrument. It was designed to provide the largest geometric acceptance possible and to reach as high an altitude as possible, flying on a standard long-duration 1.11 million m3 balloon. SuperTIGER was launched from Williams Field, McMurdo Station, Antarctica, on 2012 December 8, and made about 2.7 revolutions around the South Pole in 55?days of flight, returning data on over 50?× 106 cosmic-ray nuclei with Z?≥ 10, including ~1300 with Z? 29 and ~60 with Z? 49. Here, we describe the instrument, the methods of charge identification employed, the SuperTIGER balloon flight, and the instrument performance.
机译:SuperTIGER(Super Trans-Iron银河系元素记录仪)仪器用于测量10Ne到40Zr的银河系宇宙射线元素的丰度,具有单个元素的分辨率以及测试宇宙射线起源模型所需的高统计量。 SuperTIGER还对40? 29时的〜1300和Z?> 49时的〜60。这里,我们描述了仪器,所用电荷识别方法,SuperTIGER气球飞行以及仪器性能。
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