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Symmetry breaking and reheating after inflation in no-scale flipped SU(5)

机译:在不刻度翻转苏(5)中膨胀后的对称打破和再加热

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摘要

No-scale supergravity and the flipped SU(5) × U(1) gauge group provide an ambitious prototype string-inspired scenario for physics below the string scale, which can accommodate the Starobinsky-like inflation favoured by observation when the inflaton is associated with one of the singlet fields associated with neutrino mass generation. During inflation, the vacuum remains in the unbroken GUT phase, and GUT symmetry breaking occurs later when a field with a flat direction (the flaton) acquires a vacuum expectation value. Inflaton decay and the reheating process depend crucially on GUT symmetry breaking, as decay channels open and close, depending on the value of the flaton vacuum expectation value. Here, we consider the simultaneous cosmological evolution of both the inflaton and flaton fields after inflation. We distinguish weak, moderate and strong reheating regimes, and calculate in each case the entropy produced as all fields settle to their global minima. These three reheating scenarios differ in the value of a Yukawa coupling that introduces mass mixing between the singlets and the 10 s of SU(5). The dynamics of the GUT transition has an important impact on the production of gravitinos, and we also discuss the pattern of neutrino masses we expect in each of the three cases. Finally, we use recent CMB limits on neutrino masses to constrain the reheating models, finding that neutrino masses and the cosmological baryon asymmetry can both be explained if the reheating is strong.
机译:无规模的超级级和翻转的SU(5)×U(1)仪表组提供了一个雄心勃勃的原型弦乐机,适用于字符串秤以下物理学,可容纳令人兴奋地与观察的斯塔氏蛋白基因的通货膨胀与中微子质量产生相关的单线峰原之一。在充气期间,真空保持在不间断的肠道阶段,并且当具有扁平方向(FLOTON)的场获取真空期望值时,肠道对称破碎发生。印卷衰减和再加热过程几乎依赖于肠道对称性破碎,因为衰变通道打开和关闭,取决于扁平工真空预期值的值。在这里,我们考虑通货膨胀后的膨胀和扁平田的同时宇宙演变。我们区分弱势,温和和强烈的重新加热制度,并在每种情况下计算,因为所有领域的熵都归结为他们的全球最小值。这三种再加热情景在Yukawa联轴器的价值中不同,引入单曲与Su(5)的10秒之间的质量混合。肠道过渡的动态对朱才的产生是重要的影响,我们还讨论了我们预期的三种情况中的中微子群众的模式。最后,我们在中微子群体上使用最近的CMB限制来限制再加热模型,发现如果再加热强烈,可以解释中微子质量和宇宙学骨折不对称。

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