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Right-handed sneutrino condensate cold dark matter and the baryon-to-dark matter ratio.

机译:右手中微子冷凝冷暗物质,重子与暗物质之比。

摘要

The similarity of the observed densities of baryons and cold dark matter suggests that they have a common or related origin. This can be understood in the context of the MSSM with right-handed (RH) sneutrinos if cold dark matter is due to a d = 4 flat direction condensate of very weakly coupled RH sneutrino LSPs and the baryon asymmetry is generated by Affleck–Dine leptogenesis along the d = 4 (HuL)2 flat direction. The correct density of RH sneutrino dark matter is obtained if the reheating temperature is in the range 106–108 GeV. A cold dark matter isocurvature perturbation close to present observational bounds is likely in the case of inflation driven by a D-term or by an F-term with suppressed Hubble corrections to the A-terms. An observable baryon isocurvature perturbation is also possible in the case of D-term inflation models.
机译:重子和冷暗物质的观测密度的相似性表明它们具有共同或相关的起源。如果右暗角的中微子是由非常弱耦合的右旋中微子LSP的ad = 4平面方向凝结引起的,并且重子不对称性是由Affleck-Dine的瘦素生成沿顺时针方向(RH)的中微子在MSSM的上下文中理解的d = 4(HuL)2平坦方向。如果再加热温度在106–108 GeV范围内,则可获得正确的RH中微子暗物质密度。在由D项或F项驱动且对A项的哈勃校正受到抑制的通货膨胀的情况下,可能会接近当前观测范围的冷暗物质等曲率摄动。在D项通货膨胀模型的情况下,也可以观察到重子等曲率微扰。

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    McDonald John;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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