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首页> 外文期刊>The Astrophysical journal >CAN ASTROPHYSICAL GAMMA-RAY SOURCES MIMIC DARK MATTER ANNIHILATION IN GALACTIC SATELLITES?
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CAN ASTROPHYSICAL GAMMA-RAY SOURCES MIMIC DARK MATTER ANNIHILATION IN GALACTIC SATELLITES?

机译:天体伽马射线源能模拟银河系中的暗暗物质AN灭吗?

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摘要

The nature of the cosmic dark matter is unknown. The most compelling hypothesis is that dark matter consists of weakly interacting massive particles (WIMPs) in the 100 GeV mass range. Such particles would annihilate in the Galactic halo, producing high-energy gamma rays that might be detectable in gamma-ray telescopes such as the Gamma-Ray Large Area Space Telescope {GLAST). We investigate the ability of GLAST to distinguish between WIMP annihilation sources and astrophysical sources. Focusing on the Galactic satellite halos predicted by the cold dark matter model, we find that the WIMP gamma-ray spectrum is nearly unique; separation of the brightest WIMP sources from known source classes can be done in a convincing way by including spectral and spatial information. Candidate WIMP sources can be further studied with imaging atmospheric Cerenkov telescopes. Finally, Large Hadron Collider data might have a crucial impact on the study of Galactic dark matter.
机译:宇宙暗物质的性质是未知的。最有说服力的假设是,暗物质由质量在100 GeV范围内的弱相互作用的大颗粒(WIMP)组成。这样的粒子将在银河系光环中歼灭,产生高能伽马射线,这种射线在伽马射线望远镜(如伽马射线大面积空间望远镜(GLAST))中可能是可检测到的。我们调查了GLAST区分WIMP ni灭源和天体物理学源的能力。着眼于冷暗物质模型预测的银河卫星光晕,我们发现WIMP伽马射线谱几乎是唯一的。通过包含光谱和空间信息,可以以令人信服的方式将最亮的WIMP源与已知的源类别分离。 WIMP候选源可以通过大气Cerenkov望远镜成像来进一步研究。最后,大型强子对撞机数据可能会对银河暗物质的研究产生至关重要的影响。

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