Adiabatic versus isocurvature non-Gaussianity

Adiabatic versus isocurvature non-Gaussianity
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绝热与等曲率非高斯性

DOI:
10.1111/j.1365-2966.2010.16362.x
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发表时间:
2010
影响因子:
4.8
通讯作者:
Hikage C
Hikage C
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Hikage C

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我们研究在何种程度上可以区分原始的非高斯(NG)所产生的绝热和等曲率扰动。我们对基于不同暴胀情景的不同NG模型进行了联合分析:来自绝热扰动的局域型对称型NG和来自等曲率扰动的局域型和二次型NG以及点源的前景污染。利用Munshi和Heavens提出的斜谱估计方法分离宇宙微波背景温度和极化图双谱的Fisher信息,研究了不同NG分量信噪比的尺度依赖性及其相关性。我们发现绝热模和等曲率模是强相关的,虽然声学振荡的相位差有助于区分它们。局部型和等曲率型之间的相关性较弱,但这两种等曲率模式的相关性太强而无法区分。点源污染,在一定程度上可以被认为是白色噪声,几乎可以完全从原始成分分离为l> 100。考虑到各分量之间的相关性,我们发现,对于Wilkinson微波各向异性探测器的5年观测,NG参数的误差增加了20%-30%,而对于Planck观测,NG参数的误差增加了15%。
We study the extent to which one can distinguish primordial non-Gaussianity (NG) arising from adiabatic and isocurvature perturbations. We make a joint analysis of different NG models based on various inflationary scenarios:local-typeandequilateral-typeNG from adiabatic perturbations andlocal-typeandquadratic-typeNG from isocurvature perturbations together with a foreground contamination by point sources. We separate the Fisher information of the bispectrum of cosmic microwave background temperature and polarization maps bylfor theskew spectrumestimator introduced by Munshi and Heavens to study the scale dependence of the signal-to-noise ratio of different NG components and their correlations. We find that the adiabatic and the isocurvature modes are strongly correlated, though the phase difference of acoustic oscillations helps to distinguish them. The correlation between local- and equilateral-type is weak, but the two isocurvature modes are too strongly correlated to be discriminated. Point source contamination, to the extent to which it can be regarded as white noise, can be almost completely separated from the primordial components forl> 100. Including correlations among the different components, we find that the errors of the NG parameters increase by 20–30 per cent for theWilkinson Microwave Anisotropy Probe5-year observation, but ≃5 per cent forPlanckobservations.
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