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OPTIMIZING OBSERVING PATTERNS IN COSMIC MICROWAVE BACKGROUND RADIATION ANISOTROPY EXPERIMENTS

机译:宇宙微波背景辐射各向异性实验中的最佳观测模式

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摘要

We consider several factors concerning the design of observing strategies in cosmic microwave background (CMB) anisotropy experiments. First we consider the number of independent points on the sky one should observe given a fixed observing time. Given an assumed level of sky temperature fluctuations σ_(sky) and the presence of instrumental noise s in units of K s~(1/2) and a total observing time t_(obs), we find that there is an optimum number of points in the sky to maximize the confidence level of a detection. This number is a function of the signal to noise ratio R~2 = σ_(sky)~2 t_(obs)/s~2. We verify this analytical result with a Monte Carlo simulation, which also includes the correlation between different positions in the sky. Furthermore, using an n = 1 spectrum of Gaussian fluctuations, we show that arranging the observing patterns along a (great) circle, a raster scan, or a randomized pattern yields results which are indistinguishable in Monte Carlo simulations.
机译:我们考虑了有关宇宙微波背景(CMB)各向异性实验中的观测策略设计的几个因素。首先,我们考虑在给定固定观察时间的情况下应观察的天空上独立点的数量。给定假设的天空温度波动水平σ_(sky),并且存在以K s〜(1/2)为单位的仪器噪声s和总观测时间t_(obs),我们发现存在一个最佳点在天空中最大化检测的置信度。该数字是信噪比R〜2 =σ_(sky)〜2 t_(obs)/ s〜2的函数。我们通过蒙特卡洛模拟验证了此分析结果,该模拟结果还包括天空中不同位置之间的相关性。此外,使用n = 1的高斯涨落谱,我们表明沿(大)圆排列的观察图样,光栅扫描或随机图样产生的结果在蒙特卡洛模拟中是无法区分的。

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