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AN ABSOLUTE MEASUREMENT OF THE COSMIC MICROWAVE BACKGROUND RADIATION TEMPERATURE AT 20 CENTIMETERS

机译:20厘米宇宙微波本底辐射温度的绝对测量

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摘要

A ground-based radiometer is used to measure the absolute temperature of the cosmic microwave background radiation (CMBR) at a frequency of 1.4 GHz. The instrument comprises a corrugated horn antenna coupled to a cryogenic correlation receiver. Accurate gain calibrations are made every few minutes; the radiometer zero offset is measured at the beginning and the end of the observing season. Tip scans are made to measure the atmospheric emission. We find T_(atm) = 1550 ±170 mK for a pencil beam, measured from an elevation of 836 m. The Galactic foreground emission is removed by extrapolation from a lower frequency map. Over the region observed, the Galactic component is ~1 K and varies by ~ 10%. Cold loads are used to measure the instrumental emission. The ability to sample narrow (5 MHz) frequency bins across a 5% bandpass provides a powerful tool for studying systematic effects. For the absolute temperature of the CMBR, we find T_(CMBR) = 2.65_(-0.30)~(+0.33) K. This result is higher, but not significantly, than the value of T_(CMBR) at 1.4 GHz previously reported by Bensadoun et al.
机译:地面辐射计用于在1.4 GHz频率下测量宇宙微波背景辐射(CMBR)的绝对温度。该仪器包括耦合到低温相关接收器的波纹喇叭天线。每隔几分钟进行一次准确的增益校准;辐射计的零偏移在观测季节的开始和结束时进行测量。进行尖端扫描以测量大气排放。我们发现笔形光束的T_(atm)= 1550±170 mK,从836 m的高度测量。通过外推从较低频率的地图中删除银河前景发射。在观察到的区域中,银河成分约为1 K,变化约为10%。冷负荷用于测量仪器排放。通过5%带通对窄(5 MHz)频率仓进行采样的能力为研究系统效果提供了强大的工具。对于CMBR的绝对温度,我们发现T_(CMBR)= 2.65 _(-0.30)〜(+0.33)K。该结果比先前报道的1.4 GHz时的T_(CMBR)值高,但不显着。由Bensadoun等人撰写。

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