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首页> 外文期刊>The Astrophysical Journal. Supplement Series >Nine-year wilkinson microwave anisotropy probe (WMAP) observations: Cosmological parameter results
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Nine-year wilkinson microwave anisotropy probe (WMAP) observations: Cosmological parameter results

机译:九年威尔金森微波各向异性探测器(WMAP)观测:宇宙学参数结果

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摘要

We present cosmological parameter constraints based on the final nine-year Wilkinson Microwave Anisotropy Probe (WMAP) data, in conjunction with a number of additional cosmological data sets. The WMAP data alone, and in combination, continue to be remarkably well fit by a six-parameter ΛCDM model. When WMAP data are combined with measurements of the high-l cosmic microwave background anisotropy, the baryon acoustic oscillation scale, and the Hubble constant, the matter and energy densities, Ω_b h ~2, Ω_c h ~2, and Ω_Λ, are each determined to a precision of ~1.5%. The amplitude of the primordial spectrum is measured to within 3%, and there is now evidence for a tilt in the primordial spectrum at the 5σ level, confirming the first detection of tilt based on the five-year WMAP data. At the end of the WMAP mission, the nine-year data decrease the allowable volume of the six-dimensional ΛCDM parameter space by a factor of 68,000 relative to pre-WMAP measurements. We investigate a number of data combinations and show that their ΛCDM parameter fits are consistent. New limits on deviations from the six-parameter model are presented, for example: the fractional contribution of tensor modes is limited to r < 0.13 (95% CL); the spatial curvature parameter is limited to; the summed mass of neutrinos is limited to ∑m _ν < 0.44 eV (95% CL); and the number of relativistic species is found to lie within N _(eff) = 3.84 ± 0.40, when the full data are analyzed. The joint constraint on N _(eff) and the primordial helium abundance, Y He, agrees with the prediction of standard big bang nucleosynthesis. We compare recent Planck measurements of the Sunyaev-Zel'dovich effect with our seven-year measurements, and show their mutual agreement. Our analysis of the polarization pattern around temperature extrema is updated. This confirms a fundamental prediction of the standard cosmological model and provides a striking illustration of acoustic oscillations and adiabatic initial conditions in the early universe.
机译:我们根据最终的九年威尔金森微波各向异性探测器(WMAP)数据以及许多其他宇宙学数据集提出了宇宙学参数约束。单独使用WMAP数据,以及结合使用WMAP数据,六参数ΛCDM模型仍然非常合适。当WMAP数据与高l宇宙微波背景各向异性的测量值,重子声振荡尺度和哈勃常数相结合时,分别确定了物质和能量密度Ω_bh〜2,Ω_ch〜2和Ω_Λ精确到〜1.5%。原始光谱的幅度被测量为在3%以内,并且现在有证据表明原始光谱在5σ的水平上存在倾斜,从而证实了基于五年WMAP数据的首次倾斜检测。在WMAP任务结束时,相对于WMAP之前的测量,九年的数据将六维ΛCDM参数空间的允许体积减少了68,000倍。我们研究了许多数据组合,并证明它们的ΛCDM参数拟合是一致的。提出了与六参数模型的偏差的新限制,例如:张量模式的分数贡献被限制为r <0.13(95%CL)。空间曲率参数限于中微子的总质量限制为∑m_ν<0.44 eV(95%CL);分析全部数据时,相对论物种的数量在N _(eff)= 3.84±0.40之内。 N_(eff)和原始氦丰度Y He的联合约束与标准大爆炸核合成的预测一致。我们将普朗克对Sunyaev-Zel'dovich效应的最新测量结果与我们的七年测量结果进行了比较,并表明了它们的相互认可。我们对温度极值附近的极化模式的分析已更新。这证实了标准宇宙学模型的基本预测,并为早期宇宙中的声波振荡和绝热初始条件提供了惊人的说明。

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