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首页> 外文期刊>The Astrophysical journal >THE N-POINT CORRELATION FUNCTIONS OF THE FIRST-YEAR WILKINSON MICROWA VE ANISOTROPY PROBE SKY MAPS
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THE N-POINT CORRELATION FUNCTIONS OF THE FIRST-YEAR WILKINSON MICROWA VE ANISOTROPY PROBE SKY MAPS

机译:威尔金森微米VE各向异性探针天映射的N点相关函数。

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We compute the two-, three- and four-point correlation functions from the Wilkinson Microwave Anisotropy Probe (WMAP) first-year data and compare these with a Monte Carlo ensemble of 5000 realizations based on the best-fit WMAP running-index spectrum of Gaussian fluctuations. The analysis is carried out in three steps, covering small (< 72′), intermediate (< 5°), and large scales (up to 180°). On the largest scales our results are consistent with the previously reported hemisphere power asymmetries: the northern ecliptic hemisphere is practically devoid of large-scale fluctuations, while the southern hemisphere shows relatively strong fluctuations. We also detect excess correlations in W-band difference maps as compared with the detailed noise simulations produced by the WMAP team, possibly indicative of unknown systematics. While unlikely to affect any temperature-based results, this effect could potentially be important for the upcoming polarization data. On intermediate angular scales we find hints of a similar anisotropic distribution of power as seen on the very largest scales, but not to the same extent. In general, the model is accepted on these scales. Finally, the same is also true on the smallest scales probed in this paper.
机译:我们根据Wilkinson微波各向异性探测器(WMAP)的第一年数据计算了两点,三点和四点相关函数,并将它们与基于以下条件的最佳拟合WMAP运行指数谱的5000个实现的蒙特卡洛合奏进行了比较:高斯波动。分析分三个步骤进行,覆盖范围小(<​​72'),中间(<5°)和大尺度(最大180°)。在最大尺度上,我们的结果与先前报道的半球幂不对称一致:北黄道半球实际上没有大规模的波动,而南半球则表现出相对较强的波动。与WMAP团队产生的详细噪声仿真相比,我们还检测到W波段差异图中的过度相关性,这可能表明系统未知。尽管不太可能影响任何基于温度的结果,但这种影响对于即将到来的极化数据可能很重要。在中等角度尺度上,我们发现了在最大尺度上看到的相似的各向异性功率分布的暗示,但程度不同。通常,在这些尺度上都可以接受该模型。最后,在本文探究的最小尺度上也是如此。

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