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Is Self-Interacting Dark Matter Undergoing Dark Fusion?

机译:自相互作用的暗物质正在经历暗融合吗?

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摘要

We suggest that two-to-two dark matter fusion may be the relaxation process that resolves the smallscale structure problems of the cold collisionless dark matter paradigm. In order for the fusion cross section to scale correctly across many decades of astrophysical masses from dwarf galaxies to galaxy clusters, we require the fractional binding energy released to be greater than v(n) similar to (10(-(2-3)))n, where n = 1, 2 depends on local dark sector chemistry. The size of the dark-sector interaction cross sections must be sigma similar to 0.1-1 barn, moderately larger than for standard model deuteron fusion, indicating a dark nuclear scale. Lambda similar to O(100 MeV). Dark fusion firmly predicts constant sv below the characteristic velocities of galaxy clusters. Observations of the inner structure of galaxy groups with velocity dispersion of several hundred kilometers per second, of which a handful have been identified, could differentiate dark fusion from a dark photon model.
机译:我们建议二到两个暗物质融合可能是解决冷无碰撞暗物质范例的小规模结构问题的松弛过程。为了使融合截面在从矮星系到星系团的数十年的天体质量中正确缩放,我们要求释放的分数结合能大于v(n),类似于(10(-(2-3)) )n,其中n = 1、2取决于局部暗区化学性质。暗区相互作用截面的大小必须为σ,类似于0.1-1谷仓,适度大于标准氘核聚变模型,表明核子鳞​​片暗。 Lambda类似于O(100 MeV)。暗融合强烈地预测了恒星常数低于星系团的特征速度。以每秒几百公里的速度弥散观测星系群的内部结构,已经发现了极少数,可以将暗聚变与暗光子模型区分开。

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  • 来源
    《Physical review letters》 |2018年第22期|221806.1-221806.6|共6页
  • 作者

    McDermott Samuel D.;

  • 作者单位

    Fermilab Natl Accelerator Lab, Ctr Particle Astrophys, Batavia, IL 60510 USA;

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  • 正文语种 eng
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