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利用国际空间站量能器电子望远镜对能量为 11GeV 到 4.8TeV 的宇宙射线电子和正电子谱进行扩展测量。

Extended Measurement of the Cosmic-Ray Electron and Positron Spectrum from 11 GeV to 4.8 TeV with the Calorimetric Electron Telescope on the International Space Station.

机构信息

Department of Physics, University of Florence, Via Sansone, 1-50019 Sesto, Fiorentino, Italy.

INFN Sezione di Florence, Via Sansone, 1-50019 Sesto, Fiorentino, Italy.

出版信息

Phys Rev Lett. 2018 Jun 29;120(26):261102. doi: 10.1103/PhysRevLett.120.261102.

Abstract

Extended results on the cosmic-ray electron + positron spectrum from 11 GeV to 4.8 TeV are presented based on observations with the Calorimetric Electron Telescope (CALET) on the International Space Station utilizing the data up to November 2017. The analysis uses the full detector acceptance at high energies, approximately doubling the statistics compared to the previous result. CALET is an all-calorimetric instrument with a total thickness of 30 X_{0} at normal incidence and fine imaging capability, designed to achieve large proton rejection and excellent energy resolution well into the TeV energy region. The observed energy spectrum in the region below 1 TeV shows good agreement with Alpha Magnetic Spectrometer (AMS-02) data. In the energy region below ∼300  GeV, CALET's spectral index is found to be consistent with the AMS-02, Fermi Large Area Telescope (Fermi-LAT), and Dark Matter Particle Explorer (DAMPE), while from 300 to 600 GeV the spectrum is significantly softer than the spectra from the latter two experiments. The absolute flux of CALET is consistent with other experiments at around a few tens of GeV. However, it is lower than those of DAMPE and Fermi-LAT with the difference increasing up to several hundred GeV. The observed energy spectrum above ∼1  TeV suggests a flux suppression consistent within the errors with the results of DAMPE, while CALET does not observe any significant evidence for a narrow spectral feature in the energy region around 1.4 TeV. Our measured all-electron flux, including statistical errors and a detailed breakdown of the systematic errors, is tabulated in the Supplemental Material in order to allow more refined spectral analyses based on our data.

摘要

基于国际空间站上的量能电子望远镜(CALET)截至 2017 年 11 月的观测数据,我们给出了能量在 11GeV 到 4.8TeV 之间的宇宙射线电子+正电子谱的扩展结果。该分析利用了高能时探测器的全接收度,与之前的结果相比,统计数据增加了约一倍。CALET 是一个全量能探测器,在垂直入射时总厚度为 30X_0,具有精细成像能力,旨在实现对质子的高排斥率和优异的能量分辨率,这些性能在 TeV 能区表现尤为出色。在低于 1TeV 的能区,观测到的能谱与阿尔法磁谱仪(AMS-02)数据吻合良好。在低于约 300GeV 的能区,CALET 的谱指数与 AMS-02、费米大面积望远镜(Fermi-LAT)和暗物质粒子探测卫星(DAMPE)一致,而在 300GeV 到 600GeV 的能区,谱线比后两个实验的谱线软很多。CALET 的绝对通量与其他在几十GeV 左右的实验一致。然而,它低于 DAMPE 和 Fermi-LAT 的通量,两者之间的差异在几百GeV 左右不断增大。在高于约 1TeV 的能区观测到的能谱表明,通量的抑制与 DAMPE 的结果在误差范围内一致,而 CALET 没有在 1.4TeV 左右的能区观测到任何明显的窄谱特征。我们测量的全电子通量,包括统计误差和系统误差的详细分解,在补充材料中列出,以便根据我们的数据进行更精细的谱分析。

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