论文标题

字符串理论中的斧头$ - $杀死黑暗辐射的九头蛇

Axions in String Theory $-$ Slaying the Hydra of Dark Radiation

论文作者

Cicoli, Michele, Hebecker, Arthur, Jaeckel, Joerg, Wittner, Manuel

论文摘要

人们普遍认为,字符串理论很容易允许在宇宙学上偏爱的质量范围内建立QCD轴。所需的小衰减常数,$ f_a \ ll m_p $,可以通过使用大型压实量来实现。这表明了大容量的情况,这反过来又做出了一定的宇宙学预测:首先,闭合的弦轴的行为与通货膨胀前场景中的现场理论轴相似,即可以调节初始值,但一个受到等异形体波动的约束。此外,该体积代表了一个长寿命的模量,可能会导致早期占主导地位的阶段。最后,体积模量对其自身轴的衰减往往会过量产生深色辐射。在本文中,我们旨在通过研究不仅允许QCD轴,而且包括通货膨胀的模型来仔细分析宇宙学。相当普遍地,限制了同化的波动,将我们限制为相对较低的通胀,在目前的弦上环境中,这指向KählerOduli通货膨胀。作为一个新颖的功能,我们发现最轻(体积)模量与希格斯强烈。因此,它很快就会腐烂到SM,从而解决了原始的黑暗辐射问题。这种衰减速度要比充气量要快得多,这意味着再加热取决于发电量衰变。充气可能会重新引入黑暗辐射问题,因为它以相等的速度腐烂到更轻的模量及其轴。但是,由于它与QCD-saxion混合,因此由SM仪表玻色子的数量增强了SM的直接衰减速率。这会导致一定数量的深色辐射与当前限制一致,但在将来的测量中可能可检测到。

It is widely believed that string theory easily allows for a QCD axion in the cosmologically favoured mass range. The required small decay constant, $f_a\ll M_P$, can be implemented by using a large compactification volume. This points to the Large Volume Scenario which in turn makes certain cosmological predictions: First, the closed string axion behaves similarly to a field-theoretic axion in the pre-inflationary scenario, i.e. the initial value can be tuned but one is constrained by isocurvature fluctuations. In addition, the volume represents a long-lived modulus that may lead to an early matter-dominated phase. Finally, the decay of the volume modulus to its own axion tends to overproduce dark radiation. In this paper we aim to carefully analyze the cosmology by studying models that not only allow for a QCD axion but also include inflation. Quite generally, limits on isocurvature fluctuations restrict us to relatively low-scale inflation, which in the present stringy context points to Kähler moduli inflation. As a novel feature we find that the lightest (volume) modulus couples strongly to the Higgs. It hence quickly decays to the SM, thus resolving the original dark radiation problem. This decay is much faster than that of the inflaton, implying that reheating is determined by the inflaton decay. The inflaton could potentially reintroduce a dark radiation problem since it decays to lighter moduli and their axions with equal rates. However, due its mixing with the QCD-saxion, the inflaton has also a direct decay rate to the SM, enhanced by the number of SM gauge bosons. This results in an amount of dark radiation that is consistent with present limits but potentially detectable in future measurements.

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