论文标题

旋转场上的宇宙扰动

Cosmic Perturbations from a Rotating Field

论文作者

Co, Raymond T., Harigaya, Keisuke, Pierce, Aaron

论文摘要

在大约$ u(1)$对称性下收取的复杂标量字段出现在标准模型的良好动机扩展中。一个例子是包含与Peccei-Quinn对称性关联的QCD轴向场的场。其他包括坦率的指示,带有Baryon,Lepton或风味费用的超对称理论。这些磁场可能具有较大的价值,并在早期宇宙中的田间空间中旋转。相关的近似$ u(1)$对称性确保复合场的角方向在通货膨胀期间很轻,并且旋转在热力学上是稳定的,并且寿命长。这些特性允许旋转复杂的标量场自然用作弯曲,并解释观察到的宇宙扰动。该方案在曲率扰动中烙印在曲率扰动中,可能在未来的大规模结构观察中可检测到的水平。旋转还可以解释宇宙的重子不对称性,而不会产生过度的等化扰动。

Complex scalar fields charged under approximate $U(1)$ symmetries appear in well-motivated extensions of the Standard Model. One example is the field that contains the QCD axion field associated with the Peccei-Quinn symmetry; others include flat directions in supersymmetric theories with baryon, lepton, or flavor charges. These fields may take on large values and rotate in field space in the early universe. The relevant approximate $U(1)$ symmetry ensures that the angular direction of the complex field is light during inflation and that the rotation is thermodynamically stable and is long-lived. These properties allow rotating complex scalar fields to naturally serve as curvatons and explain the observed perturbations of the universe. The scenario imprints non-Gaussianity in the curvature perturbations, likely at a level detectable in future large scale structure observations. The rotation can also explain the baryon asymmetry of the universe without producing excessive isocurvature perturbations.

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