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The Vacuum State of Primordial Fluctuations in Hybrid Loop Quantum Cosmology

机译:混合环量子宇宙学中原始涨落的真空状态

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We investigate the role played by the vacuum of the primordial fluctuations in hybrid Loop Quantum Cosmology. We consider scenarios where the inflaton potential is a mass term and the unperturbed quantum geometry is governed by the effective dynamics of Loop Quantum Cosmology. In this situation, the phenomenologically interesting solutions have a preinflationary regime where the kinetic energy of the inflaton dominates over the potential. For these kind of solutions, we show that the primordial power spectra depend strongly on the choice of vacuum. We study in detail the case of adiabatic states of low order and the non-oscillating vacuum introduced by Martín de Blas and Olmedo, all imposed at the bounce. The adiabatic spectra are typically suppressed at large scales, and display rapid oscillations with an increase of power at intermediate scales. In the non-oscillating vacuum, there is power suppression for large scales, but the rapid oscillations are absent. We argue that the oscillations are due to the imposition of initial adiabatic conditions in the region of kinetic dominance, and that they would also be present in General Relativity. Finally, we discuss the sensitivity of our results to changes of the initial time and other data of the model.
机译:我们研究了混合循环量子宇宙学中原始涨落的真空度所起的作用。我们考虑以下情况:充胀子电势是一个质量项,不受干扰的量子几何受环量子宇宙学的有效动力学支配。在这种情况下,从现象学角度出发令人感兴趣的解决方案具有一种通货膨胀前的体制,在该体制下,充气的动能占主导地位。对于这类解决方案,我们表明原始功率谱在很大程度上取决于真空度的选择。我们详细研究了马丁·德·布拉斯和奥尔梅多引入的低阶绝热状态和非振荡真空的情况,这些都是在反弹时施加的。绝热光谱通常在大范围内被抑制,并且在中等范围内随着功率的增加而显示出快速振荡。在非振荡真空中,可以进行大范围的功率抑制,但是没有快速振荡。我们认为,振荡是由于在动力学支配区域施加了绝热条件,并且它们也将出现在广义相对论中。最后,我们讨论了结果对初始时间和模型其他数据变化的敏感性。

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