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Cold ultrarelativistic pulsar winds as potential sources of galactic gamma-ray lines above 100?GeV

机译:冷超相对论脉冲星风是100?GeV以上的银河伽马射线线的潜在来源

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Context. The evidence of line-like spectral features above 100?GeV, in particular at 130?GeV, which have been recently reported from some parts of the Galactic plane, poses serious challenges for any interpretation of this surprise discovery. It is generally believed that the unusually narrow profile of the spectral line cannot be explained by conventional processes in astrophysical objects, and, if real, is likely to be associated with dark matter. Aims. In this paper we argue that cold ultrarelativistic pulsar winds can be alternative sources of very narrow gamma-ray lines. Methods. We demonstrate that Comptonization of a cold ultrarelativistic electron-positron pulsar wind in the deep Klein-Nishina regime can readily provide very narrow (ΔE/E?≤?0.2) distinct gamma-ray line features. To verify this prediction, we produced photon-count maps based on the Fermi LAT data in the energy interval 100 to 140?GeV. Results. We confirm earlier reports of the presence of marginal gamma-ray line-like signals from three regions of the Galactic plane. Although the maps show some structure inside these regions, unfortunately the limited photon statistics do not allow any firm conclusion in this regard. Conclusions. The confirmation of 130?GeV line emission by low-energy threshold atmospheric Cherenkov telescope systems, in particular by the new 28?m diameter dish of the H.E.S.S. array, would be crucial for resolving the spatial structure of the reported hotspots, and thus for distinguishing between the dark matter and pulsar origins of the “Fermi Lines”.
机译:上下文。最近银河系平面的某些部分报道了高于100?GeV的线状光谱特征的证据,特别是在130?GeV的证据,这对这一意外发现的任何解释都构成了严峻的挑战。通常认为,光谱线的异常窄的轮廓不能用天体物理物体的常规方法来解释,如果是真实的,很可能与暗物质有关。目的在本文中,我们认为冷超相对论脉冲星风可能是非常窄的伽马射线线的替代来源。方法。我们证明了在较深的克莱因-西西那政权中,冷的相对论性电子正电子脉冲星风的康顿化可以很容易地提供非常窄的(ΔE/E≤≤0.2)独特的伽马射线谱线特征。为了验证这一预测,我们基于费米LAT数据在100至140?GeV的能量间隔中产生了光子计数图。结果。我们证实了较早的报道,即来自银河平面三个区域的边缘伽马射线线状信号的存在。尽管这些图显示了这些区域内部的某些结构,但不幸的是,有限的光子统计数据在这方面没有任何确定的结论。结论。低能量阈值大气Cherenkov望远镜系统,特别是H.E.S.S.新型28毫米直径碟形天线,确认了130?GeV谱线的发射。阵列,对于解决所报告热点的空间结构,从而区分“费米线”的暗物质和脉冲星起源至关重要。

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