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SIMULATED COSMIC MICROWAVE BACKGROUND MAPS AT 0?5 RESOLUTION: BASIC RESULTS

机译:模拟的宇宙微波背景图在0?5分辨率:基本结果

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We have simulated full-sky maps of the cosmic microwave background (CMB) anisotropy expected from cold dark matter (CDM) models at 0.5° and 1.0° angular resolution. Statistical properties of the maps are presented as a function of sky coverage, angular resolution, and instrument noise, and the implications of these results for observability of the Doppler peak are discussed. The rms fluctuations in a map are not a particularly robust probe of the existence of a Doppler peak; however, a full correlation analysis can provide reasonable sensitivity. We find that sensitivity to the Doppler peak depends primarily on the fraction of sky covered, and only secondarily on the angular resolution and noise level. Color plates of the simulated maps are presented to illustrate the anisotropies.
机译:我们已经模拟了在0.5°和1.0°角分辨率下从冷暗物质(CDM)模型获得的宇宙微波背景(CMB)各向异性的全天候图。这些地图的统计属性是作为天空覆盖范围,角分辨率和仪器噪声的函数呈现的,并讨论了这些结果对多普勒峰可观测性的影响。图中的均方根波动并不是对多普勒峰存在的特别鲁棒的探查;但是,全面的相关性分析可以提供合理的敏感性。我们发现,对多普勒峰的灵敏度主要取决于所覆盖的天空比例,仅次于角度分辨率和噪声水平。呈现了模拟图的色板以说明各向异性。

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