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Creating spatial flatness by combining string gas cosmology and power law inflation

机译:通过组合弦气宇宙学和权力通货膨胀来创造空间平坦度

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We show that it is possible to combine an early phase of string gas cosmology which can explain the origin of the observed structures on cosmological scales with a short later period of power law inflation which creates spatial flatness. The resulting model is consistent with the “swampland criteria” and the constraints coming from the Trans-Planckian Censorship Conjecture . Such a construction is not possible using only canonical slow-roll inflation, but it can emerge in the warm inflation scenario or in cold inflation with an exponential potential. The resulting cosmology is nonsingular. We discuss the spectrum of cosmological perturbations resulting in our scenario. On large scales (scales which remain larger than the Hubble radius after the initial string gas phase), the spectrum is determined by the thermal string gas fluctuations set up in the primordial phase, and it is almost scale invariant with a slight red tilt. On small scales, the perturbations produced during the inflationary phase dominate. On these scales, the spectrum is once again nearly scale invariant. There is an intermediate range (scales which enter the Hubble radius during the period of inflation) in which the string gas fluctuations are damped but continue to dominate over those produced during the period of inflation. On these scales, the spectrum has a sharp red spectral index of n s ? 1 ~ ? 2 .
机译:我们表明,可以将弦气宇宙学的早期阶段结合,这可以解释宇宙学尺度上观察到的结构的起源,其较短的电力法通胀时期产生空间平坦度。由此产生的模型与“SWAMPLAND标准”一致,并且来自跨普朗克审查猜想的约束。这种结构是不可能使用的只能使用规范慢轧通货膨胀,但它可以在温暖的通胀场景中出现或具有指数潜力的冷气通胀。由此产生的宇宙学是不良的。我们讨论了宇宙学扰动的频谱,从而导致我们的场景。在大刻度(初始弦气相后保持大于霍布拉半径的刻度),光谱由在原始阶段中设置的热弦气体波动确定,并且它几乎是鳞片不变的略微红色倾斜。在小鳞片上,通胀相位占主导地位期间产生的扰动。在这些尺度上,频谱再次逐渐缩放不变。存在中间范围(在膨胀期间进入霍布尔半径的刻度),其中弦气波动被阻尼,但继续在通胀期间产生的那些。在这些尺度上,频谱具有n s的尖锐红光谱指数? 1〜? 2。

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