Kavli Institute for Cosmology Cambridge and Institute of Astronomy, Madingley Road, Cambridge CB3 0HA, United Kingdom and DAMTP, Centre for Mathematical Sciences, Wilberforce Road, Cambridge CB3 0WA, United Kingdom.
Université de Genève, Département de Physique Théorique and CAP, 24 Quai Ernest-Ansermet, CH-1211 Genève, Switzerland.
Phys Rev Lett. 2014 May 16;112(19):191303. doi: 10.1103/PhysRevLett.112.191303. Epub 2014 May 15.
If the B-mode signal in the cosmic microwave background polarization seen by the BICEP2 experiment is confirmed, it has dramatic implications for models of inflation. The result is also in tension with Planck limits on standard inflationary models. It is, therefore, important to investigate whether this signal can arise from alternative sources. If so, this could lessen the pressure on inflationary models and the tension with Planck data. We investigate whether vector and tensor modes from primordial magnetic fields can explain the signal. We find that, in principle, magnetic fields generated during inflation can indeed produce the required B mode, for a suitable range of energy scales of inflation. In this case, the primordial gravitational wave amplitude is negligible, so that there is no tension with Planck and no problems posed for current inflationary models. However, the simplest magnetic model is in tension with Planck limits on non-Gaussianity in the trispectrum. It may be possible to fine tune the magnetogenesis model so that this non-Gaussianity is suppressed. Alternatively, a weaker magnetic field can pass the non-Gaussianity constraints and allow the primordial tensor mode to be reduced to r ≃ 0.09, thus removing the tension with Planck data and alleviating the problems with simple inflationary models.
如果 BICEP2 实验观测到的宇宙微波背景极化中的 B 模式信号得到证实,那么这将对暴涨模型产生重大影响。这一结果也与普朗克对标准暴涨模型的限制相矛盾。因此,重要的是要研究这种信号是否可能来自替代源。如果是这样,这可能会减轻对暴涨模型的压力,并缓解与普朗克数据的紧张关系。我们研究了原初磁场中的矢量和张量模式是否可以解释这一信号。我们发现,原则上,暴涨期间产生的磁场确实可以在适当的暴涨能量标度范围内产生所需的 B 模式。在这种情况下,原初引力波振幅可以忽略不计,因此不会与普朗克数据产生冲突,也不会对当前的暴涨模型造成问题。然而,最简单的磁场模型与普朗克对三谱中的非高斯性的限制相矛盾。可能需要微调磁发生模型以抑制这种非高斯性。或者,较弱的磁场可以通过非高斯性约束,使原初张量模式减少到 r ≃ 0.09,从而消除与普朗克数据的紧张关系,并缓解简单暴涨模型的问题。