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首页> 外文期刊>The Astrophysical journal >The Energy Spectrum of Cosmic-Ray Electrons from 10 to 100 GeV Observed with a Highly Granulated Imaging Calorimeter
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The Energy Spectrum of Cosmic-Ray Electrons from 10 to 100 GeV Observed with a Highly Granulated Imaging Calorimeter

机译:高粒度成像量热仪观测的10至100 GeV宇宙射线电子的能谱

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摘要

Cosmic-ray electrons have been observed in the energy range from 12 to ~100 GeV with a new balloon-borne payload, the Balloon-borne Electron Telescope with Scintillating Fibers (BETS). This is the first publication of the absolute energy spectrum of electrons measured with a highly granulated fiber calorimeter. The calorimeter makes it possible to select electrons against the background protons by detailed observation of both the longitudinal and the lateral shower development. The performance of the detector was calibrated by the CERN-SPS accelerator beams: electrons from 5 to 100 GeV, protons from 60 to 250 GeV. The balloon observations were carried out twice, in 1997 and 1998, at the Sanriku Balloon Center (Institute of Space and Astronautical Science) in Japan. The observation time was ~13 hr in all at an altitude above 34 km. A total of 1349 electron candidates were collected, and the 628 events with energies above 12.5 GeV, well above the geomagnetic rigidity cutoff of ~10 GV, have been used to compose a differential absolute energy spectrum at the top of the atmosphere. The energy spectrum is described by a power-law index of 3.00 ± 0.09, and the absolute differential intensity at 10 GeV is 0.199 ± 0.015 m-2 s-1 sr-1 GeV-1. The overall shape of the energy spectrum in 10 ~ 100 GeV can be explained by a diffusion model, in which we assume an energy-dependent diffusion coefficient (∝ E0.3) for an injection spectrum, E-2.4.
机译:使用新的气球载有效载荷,即带有闪烁纤维的气球载电子望远镜(BETS),已经观察到宇宙射线电子的能量范围为12至100 GeV。这是用高度颗粒化的纤维量热计测量的电子绝对能谱的首次发表。通过详细观察纵向和横向喷淋的发展,量热计可以针对背景质子选择电子。探测器的性能通过CERN-SPS加速器光束进行了校准:电子为5至100 GeV,质子为60至250 GeV。在1997年和1998年,日本三陆气球中心(太空与宇航科学研究所)对气球进行了两次观测。在34 km以上的高度,整个观测时间约为13小时。总共收集了1349个电子候选物,并且628个事件的能量高于12.5 GeV,远高于地磁刚性截止值〜10 GV,已被用来在大气层顶部构成差分绝对能谱。能谱由3.00±0.09的幂律指数描述,在10 GeV时的绝对微分强度为0.199±0.015 m-2 s-1 sr-1 GeV-1。 10〜100 GeV的能谱整体形状可以用扩散模型来解释,其中我们假设注入光谱E-2.4依赖于能量的扩散系数(∝ E0.3)。

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