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Higgs chaotic inflation and the primordial B-mode polarization discovered by BICEP2

机译:BICEP2发现希格斯混沌膨胀和原始B型极化

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We show that the standard model Higgs field can realize the quadratic chaotic inflation, if the kinetic term is significantly modified at large field values. This is a simple realization of the so-called running kinetic inflation. The point is that the Higgs field respects an approximate shift symmetry at high energy scale. The tensor-to-scalar ratio is predicted to ber?0.13–0.16, which nicely explains the primordial B-mode polarization,r=0.20?0.05+0.07, recently discovered by the BICEP2 experiment. In particular, allowing small modulations induced by the shift symmetry breaking, the negative running spectral index can also be induced. The reheating temperature is expected to be so high that successful thermal leptogenesis is possible. The suppressed quartic coupling of the Higgs field at high energy scales may be related to the Higgs chaotic inflation.
机译:我们证明,如果动力学项在大场值处显着修改,则标准模型希格斯场可以实现二次混沌膨胀。这是所谓的运行动膨胀的简单实现。关键是希格斯场在高能级上遵循近似的位移对称性。张量/标量比预计为ber?0.13-0.16,这很好地解释了BICEP2实验最近发现的原始B型极化,r = 0.20?0.05 + 0.07。特别地,允许由移位对称性破坏引起的小的调制,也可以诱发负的运行光谱指数。期望再加热温度如此之高,以致可能成功进行热瘦素形成。希格斯场在高能级上被抑制的四次耦合可能与希格斯混沌膨胀有关。

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