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首页> 外文期刊>The Astrophysical journal >DARK MATTER AND SYNCHROTRON EMISSION FROM GALACTIC CENTER RADIO FILAMENTS
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DARK MATTER AND SYNCHROTRON EMISSION FROM GALACTIC CENTER RADIO FILAMENTS

机译:银河中心无线电灯丝的暗物质和同步辐射

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The inner degrees of the Galactic center contain a large population of filamentary structures observed at radio frequencies. These so-called non-thermal radio filaments (NRFs) trace magnetic field lines and have attracted significant interest due to their hard (Sv ∝ν–0.1 ± 0.4) synchrotron emission spectra. The origin of these filaments remains poorly understood. We show that the electrons and positrons created through the annihilations of a relatively light (~5-10 GeV) dark matter particle with the cross section predicted for a simple thermal relic can provide a compelling match to the intensity, spectral shape, and flux variation of the NRFs. Furthermore, the characteristics of the dark matter particle necessary to explain the synchrotron emission from the NRFs are consistent with those required to explain the excess γ-ray emission observed from the Galactic center by the Fermi Large Area Telescope, as well as the direct detection signals observed by CoGeNT and DAMA/LIBRA.
机译:银河系中心的内部度包含在无线电频率下观察到的大量丝状结构。这些所谓的非热辐射灯丝(NRF)跟踪磁场线,由于其硬的(Sv ∝ν–0.1±0.4)同步加速器发射光谱而引起了人们的极大兴趣。这些细丝的起源仍然知之甚少。我们表明,通过相对轻的(〜5-10 GeV)暗物质粒子的hil灭产生的电子和正电子,其截面预测为简单的热物,可以提供强度,光谱形状和通量变化的引人注目的匹配NRF。此外,解释NRF的同步加速器发射所必需的暗物质粒子的特性与解释费米大面积望远镜从银河中心观测到的多余γ射线发射所需要的那些特性以及直接检测信号相一致。由CoGeNT和DAMA / LIBRA观察到。

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