Interstellar meteoroid impacts on the Moon can be detected and characterized in real time at a rate of roughly one per year with a 2-meter lunar-orbiting telescope.
Searching the Moon for Extrasolar Material and the Building Blocks of Extraterrestrial Life
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abstract
Due to its absence of an atmosphere and relative geological inertness, the Moon's surface records past impacts of objects from the Solar system and beyond. We examine the prospects for discovering extrasolar material near the lunar surface and predict that its abundance is $\mathcal{O}(10)$ parts-per-million (ppm). The abundances of extrasolar organic carbon and biomolecular building blocks (e.g., amino acids) are estimated to be on the order of $0.1$ ppm and $< 0.1$ parts-per-billion (ppb), respectively. We describe strategies for identifying extrasolar material and potentially detecting extrasolar biomolecular building blocks as well as molecular biosignatures of extinct extraterrestrial life. Thus, viewed collectively, we argue that \emph{in situ} lunar exploration can provide vital new clues for astrobiology.
fields
astro-ph.EP 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
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A Real-Time Search for Interstellar Impacts on the Moon
Interstellar meteoroid impacts on the Moon can be detected and characterized in real time at a rate of roughly one per year with a 2-meter lunar-orbiting telescope.