论文标题

部分可观测时空混沌系统的无模型预测

Forecast Analysis on Interacting Dark Energy Models from Future Generation PICO and DESI Missions

论文作者

Joseph, Albin, Saha, Rajib

论文摘要

预计下一代CMB卫星任务将在具有前所未有的精度的广泛宇宙学参数上提供强大的约束。但是,如果我们不将暗能归因于宇宙常数,那么对参数的这些限制可能会削弱。涉及暗能量与暗物质之间相互作用的宇宙学模型可以在当前时期引起可比的能量密度,从而减轻所谓的宇宙巧合问题。在本文中,我们进行了预测分析,以测试未来一代高敏感的宇宙微波背景(CMB)的能力,而Baryon声学振荡(BAO)实验可以限制现象学相互作用的黑暗能量模型。我们考虑宇宙方差有限的未来CMB极化实验PICO以及来自DESI实验的BAO信息,以限制相互作用的黑暗扇区的参数。基于宇宙学扰动的稳定性,我们考虑了相互作用情况的两种可能性。我们研究了耦合常数和暗能量的状态参数方程对CMB温度功率谱,物质功率谱和$Fσ_8$的影响。我们已经在多极范围内使用了PICO的模拟温度和极化数据($ \ ell = 2-4000 $),正如预期的那样,我们确实看到PICO在$λ$ CDM参数上产生的约束比Planck更好。随着PICO和DESI任务的整合,我们观察到了几个宇宙学参数的约束,尤其是暗能量的状态参数方程。但是,我们注意到需要其他数据来限制一个小的正耦合常数。

The next-generation CMB satellite missions are expected to provide robust constraints on a wide range of cosmological parameters with unprecedented precision. But these constraints on the parameters could weaken if we do not attribute dark energy to a cosmological constant. The cosmological models involving interaction between dark energy and dark matter can give rise to comparable energy densities at the present epoch, thereby alleviating the so-called cosmic coincidence problem. In the present paper, we perform a forecast analysis to test the ability of the future generation high-sensitive Cosmic Microwave Background (CMB), and Baryon Acoustic Oscillation (BAO) experiments to constrain phenomenological interacting dark energy models. We consider cosmic variance limited future CMB polarization experiment PICO along with BAO information from the DESI experiment to constrain the parameters of the interacting dark sector. Based on the stability of the cosmological perturbations, we consider two possibilities for the interaction scenario. We investigate the impact of both the coupling constant and the equation of state parameter of dark energy on the CMB temperature power spectrum, matter power spectrum, and $fσ_8$. We have used simulated temperature and polarization data from PICO within the multipole ranges ($\ell = 2 - 4000$), and as expected, we do see PICO alone produces better constraints than Planck on the $Λ$CDM parameters. With the integration of the PICO and DESI missions, we observe a significant improvement in the constraints on several cosmological parameters, especially the equation of state parameter of dark energy. However, we note that additional data is required to constrain a small positive coupling constant.

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