论文标题

透过镜头的地球:其他文明通过光度微透镜检测到多久一次?

Earth through the looking glass: how frequently are we detected by other civilisations through photometric microlensing?

论文作者

Suphapolthaworn, S., Awiphan, S., Chatchadanoraset, T., Kerins, E., Specht, D., Nakharutai, N., Komonjinda, S., Robin, A. C.

论文摘要

事实证明,微透镜是检测银河系最常见恒星周围遥远的低质量行星的最佳技术之一。原则上,地球的微卷信号可能为其他技术文明提供了跨银河距离的地球的机会。我们将地球的光度微透镜信号视为其他潜在的技术文明,并将地球的光度测定微透镜信号从该区域(EMZ)(EMZ)中最容易观察到我们的星系。可以将EMZ视为地球运输区(ETZ)的微透明类似物,从那里观察者看到地球传输太阳。与ETZ一样,EMZ可能代表了针对性搜索外星智能(SETI)的游戏理论schelling点。为了计算EMZ,我们使用具有幅度g <20幅度的GAIA DR2目录来为其他观察者生成地球微透镜的概率和检测率图。虽然我们的太阳系是一个多行星系统,但我们表明,二进制镜头的假设几乎总是近似地球的光度微镜签名。然后,我们证明,地球实际上对具有与我们自己的技术相媲美的观察者非常隐蔽。具体而言,即使观察者位于每个Gaia DR2恒星周围,我们也希望每年平均每年只能观察到来自地球的光度测定微透镜签名。此外,EMZ与银河中心附近的ETZ重叠,这可能是未来SETI搜索的主要领域。

Microlensing is proving to be one of the best techniques to detect distant, low-mass planets around the most common stars in the Galaxy. In principle, Earth's microlensing signal could offer the chance for other technological civilisations to find the Earth across Galactic distances. We consider the photometric microlensing signal of Earth to other potential technological civilisations and dub the regions of our Galaxy from which Earth's photometric microlensing signal is most readily observable as the "Earth Microlensing Zone" (EMZ). The EMZ can be thought of as the microlensing analogue of the Earth Transit Zone (ETZ) from where observers see Earth transit the Sun. Just as for the ETZ, the EMZ could represent a game-theoretic Schelling point for targeted searches for extra-terrestrial intelligence (SETI). To compute the EMZ, we use the Gaia DR2 catalogue with magnitude G<20 to generate Earth microlensing probability and detection rate maps to other observers. Whilst our Solar system is a multi-planet system, we show that Earth's photometric microlensing signature is almost always well approximated by a binary lens assumption. We then show that the Earth is in fact well-hidden to observers with technology comparable to our own. Specifically, even if observers are located around every Gaia DR2 star with G<20, we expect photometric microlensing signatures from the Earth to be observable on average only tens per year by any of them. In addition, the EMZs overlap with the ETZ near the Galactic centre which could be the main areas for future SETI searches.

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