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首页> 外文期刊>Physical review, D >Cherenkov radiation in the sky: Measuring the sound speed of primordial scalar fluctuations
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Cherenkov radiation in the sky: Measuring the sound speed of primordial scalar fluctuations

机译:Cherenkov辐射在天空中:测量原始标量波动的声速

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We consider production of additional relativistic particles coupled to the inflaton. We show that the imprints of these particles on the spectrum of primordial perturbations can be used for the direct measurement of the speed of sound of scalar perturbations, regardless of the mechanism of the production of this species. We study a model where these relativistic localized sources are decay products of heavier particles generated via a resonance mechanism. These particles emit in-phase inflaton particles which interfere constructively on the so-called sound boom, leading to an "inflationary Cherenkov effect." The resulting shock waves lead to distinctive patterns on the temperature anisotropies of the cosmic microwave background. Moreover, we show that the model predicts unique features on the power spectrum of curvature perturbation and sizeable flattened non-Gaussianity for a suitable range of parameters.
机译:我们考虑生产额外的相互作用的颗粒,耦合到注入量。 我们表明这些颗粒对原始扰动频谱的印记可用于直接测量标量扰动的声音速度,无论该物种的产生机制如何。 我们研究了这些相对论局部源是通过共振机构产生的较重颗粒的腐烂产品的模型。 这些颗粒发出了相位的入口颗粒,其在所谓的声音繁荣上建设性地干扰,导致“通胀Cherenkov效应”。 所产生的冲击波导致宇宙微波背景的温度各向异性的独特模式。 此外,我们表明该模型预测了在适当范围的参数范围内的曲率扰动和施集扁平的非高斯的功率谱上的独特特征。

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