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Gravitational waves and the (quantum) nature of the primordial seed

机译:引力波与原始种子的(量子)性质

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摘要

At first glance, the (indirect) measurement of primordial tensor modes by the BICEP2 Collaboration supports an inflationary paradigm for early universe cosmology together with quantum vacuum fluctuations (aka gravitons) as the origin of the spectrum. In this paper, we argue the observed signal may instead be a signature of semiclassical sources of perturbations during inflation. In this scenario, despite a large tensor-to-scalar ratio r similar or equal to 0.2, it may be possible to write an effective field theory (EFT) of a rolling scalar field without super-Planckian excursions. If the results from BICEP2 withstand further scrutiny, measurements of primordial non-Gaussianity with large scale structure surveys, and direct detection of gravitational waves (GWs) with the new generation of observatories, will be of paramount importance to elucidate the (quantum) origin of structure in the universe.
机译:乍一看,BICEP2协作对原始张量模式的(间接)测量结果支持了早期宇宙宇宙学的膨胀范式以及量子真空涨落(又称引力子)作为频谱的起源。在本文中,我们认为观察到的信号可能是通货膨胀期间半经典扰动源的特征。在这种情况下,尽管大的张量与标量之比r等于或等于0.2,但有可能写出一个滚动的标量场的有效场论(EFT),而无需超普朗克偏移。如果BICEP2的结果经得起进一步的审查,那么利用大规模结构调查对原始非高斯性进行测量,并利用新一代天文台直接检测引力波(GWs),对于阐明卫星的(量子)起源至关重要。宇宙中的结构。

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