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Megachannel Extraterrestrial Assay Candidates: No Transmissions from Intrinsically Steady Sources

机译:大通道外星测定候选者:本征源稳定无传播

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摘要

This paper reports new, more sensitive observations of nine of the eleven extrastatistical signals in the Megachannel Extraterrestrial Assay (META). These extrastatistical signals had all of the expected characteristics of a transmission from an extraterrestrial transmitter, except that they did not repeat. Cordes, Lazio, & Sagan showed that this lack of repeatability could be explained by the high detection thresholds used in the reobservations of these candidates combined with interstellar scintillation of intrinsically steady sources. We use the Cordes, Lazio, & Sagan methodology, correcting an error in the original presentation, and our new observations to rule out this scintillation hypothesis at a confidence level of at least 97.8% (for the case of an intrinsically weak source) to a level in excess of 99% (if the source strengths are comparable to that favored by Cordes, Lazio, & Sagan. We also demonstrate that gravitational microlensing cannot account for the initial detection of these candidate signals nor is gravitational lensing likely to play a role in future SETI programs. We conclude that the META candidates do not reflect a large population of powerful, strong beacons.
机译:本文报告了兆通道外星测定(META)中11个外统计信号中9个的新的,更敏感的观察结果。这些外统计信号具有从地外发射机传输的所有预期特性,只是它们没有重复。 Cordes,Lazio和Sagan指出,这种重复性的缺乏可以通过重新观测这些候选物时使用的高检测阈值以及星际闪烁源于本征稳定源来解释。我们使用Cordes,Lazio和Sagan方法论来纠正原始表示中的错误,并使用我们的新观察结果以至少97.8%(对于固有弱源)的置信度排除该闪烁假设。超过99%的水平(如果光源强度与Cordes,Lazio和Sagan所推荐的强度相当)。我们还证明了引力微透镜不能解释这些候选信号的初始检测,引力透镜也不可能在我们的结论是,META候选人不能反映大量强大而强大的信标。

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