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ARRAY FOR MICROWAVE BACKGROUND ANISOTROPY: OBSERVATIONS, DATA ANALYSIS, AND RESULTS FOR SUNYAEV-ZEL'DOVICH EFFECTS

机译:微波背景各向异性的阵列:SUNYAEV-ZEL'DOVICH效应的观测,数据分析和结果

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摘要

We present observations, analysis, and results for the first-year operation of Array for Microwave Background Anisotropy (AMiBA), an interferometric experiment designed to study cosmology via the measurement of cosmic microwave background (CMB). AMiBA is the first CMB interferometer operating at 3 mm to have reported successful results, currently with seven close-packed antennas of 60 cm diameter giving a synthesized resolution of around 6'. During 2007, AMiBA detected the Sunyaev-Zel'dovich effects (SZEs) of six galaxy clusters at redshift 0.091 ≤ z ≤ 0.322. An observing strategy with on-off-source switching is used to minimize the effects from electronic offset and ground pickup. Planets were used to test the observational capability of AMiBA and to calibrate the conversion from correlator time-lag data to visibilities. The detailed formalism for data analysis is given. We summarize our early tests including observations of planets and quasars, and present images, visibility profiles, the estimated central coordinates, sizes, and SZE amplitudes of the galaxy clusters. Scientific implications are summarized. We also discuss possible systematic effects in the results.
机译:我们介绍了微波背景各向异性阵列(AMiBA)的第一年运行的观测,分析和结果,这是一种旨在通过测量宇宙微波背景(CMB)研究宇宙学的干涉实验。 AMiBA是第一个在3mm波长下运行的CMB干涉仪,已报告了成功的结果,目前具有7个60cm直径的紧凑型天线,综合分辨率约为6'。在2007年期间,AMiBA在红移0.091≤z≤0.322的情况下检测到六个星系团的Sunyaev-Zel'dovich效应(SZE)。使用带有源-源切换的观察策略可最大程度地减少电子偏移和接地的影响。行星用于测试AMiBA的观测能力,并校准从相关器时滞数据到可见性的转换。给出了数据分析的详细形式。我们总结了我们的早期测试,包括对行星和类星体的观测,并给出了图像,能见度剖面图,估计的中心坐标,星系团的大小和SZE振幅。总结了科学意义。我们还将讨论结果中可能的系统影响。
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