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The Application of Autocorrelation SETI Search Techniques in an ATA Survey

机译:自相关SETI搜索技术在ATA测量中的应用

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摘要

We report a novel radio autocorrelation search for extraterrestrial intelligence. For selected frequencies across the terrestrial microwave window (1–10 GHz), observations were conducted at the Allen Telescope Array to identify artificial non-sinusoidal periodic signals with radio bandwidths greater than 4 Hz, which are capable of carrying substantial messages with symbol rates from 4 to 106 Hz. Out of 243 observations, about half (101) were directed toward sources with known continuum flux?>~1 Jy over the sampled bandwidth (quasars, pulsars, supernova remnants, and masers), based on the hypothesis that they might harbor heretofore undiscovered natural or artificial repetitive, phase or frequency modulation. The rest of the observations were directed mostly toward exoplanet stars with no previously discovered continuum flux. No signals attributable to extraterrestrial technology were found in this study. We conclude that the maximum probability that future observations like the ones described here will reveal repetitively modulated emissions is less than 5% for continuum sources and exoplanets alike. The paper concludes by describing a new approach to expanding this survey to many more targets and much greater sensitivity using archived data from interferometers all over the world.
机译:我们报告了一种新颖的无线电自相关搜索,用于外星情报。对于整个地面微波窗口(1–10 GHz)上的选定频率,在Allen望远镜阵列上进行了观测,以识别出无线电带宽大于4 Hz的人造非正弦周期信号,这些信号能够携带符号率从4至106 Hz。在243个观测值中,约有一半(101)被定向到在采样带宽上已知连续谱通量?>〜1 Jy的源(类星体,脉冲星,超新星残留物和masers),这是基于它们迄今仍未发现的天然假设或人工重复,相位或频率调制。其余的观测结果大部分是针对系外行星的恒星,没有先前发现的连续谱通量。在这项研究中没有发现可归因于地外技术的信号。我们得出结论,对于连续源和系外行星,像此处描述的那样,将来的观测将揭示重复调制的发射的最大概率小于5%。本文通过描述一种新方法来进行总结,该方法使用了来自世界各地的干涉仪的存档数据,将该调查扩展到更多目标和更高的灵敏度。

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