Lunar exploration: opening a window into the history and evolution of the inner Solar System

Ian Crawford, K. H. Joy

Philosophical Transactions of the Royal Society A Mathematical Physical and Engineering Sciences · 2014 · 90 citations · 109 references

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TL;DR

The lunar geological record contains a rich archive of the history of the inner Solar System, including information relevant to understanding the origin and evolution of the Earth–Moon system, the geological evolution of rocky planets, and our local cosmic environment. This paper reviews lunar exploration to date and outlines how future initiatives will advance understanding of the Moon, the Earth–Moon system, and the Solar System. Future exploration can be achieved robotically via in‑situ geochemical and geophysical measurements and targeted sample return missions, and in the longer term through renewed human operations guided by the Global Exploration Roadmap. The authors conclude that advancing lunar science requires deploying new instruments and returning additional samples, and that renewed human operations guided by the Global Exploration Roadmap would provide significant benefits.

Abstract

The lunar geological record contains a rich archive of the history of the inner Solar System, including information relevant to understanding the origin and evolution of the Earth–Moon system, the geological evolution of rocky planets, and our local cosmic environment. This paper provides a brief review of lunar exploration to-date and describes how future exploration initiatives will further advance our understanding of the origin and evolution of the Moon, the Earth–Moon system and of the Solar System more generally. It is concluded that further advances will require the placing of new scientific instruments on, and the return of additional samples from, the lunar surface. Some of these scientific objectives can be achieved robotically, for example by in situ geochemical and geophysical measurements and through carefully targeted sample return missions. However, in the longer term, we argue that lunar science would greatly benefit from renewed human operations on the surface of the Moon, such as would be facilitated by implementing the recently proposed Global Exploration Roadmap.

References

109