Lunar Reflective Interferometry
Peter W. Gorham, T. Joseph W. Lazio, Andrew Romero-Wolf, Patrick S. Allison, Marin M. Anderson, Ali M. Bramson, Roman Burridge, Amy Connolly, Emily S. Costello, Cosmin Deaconu, Susan Lepri, Christian Miki, Eric Oberla, Sean Peters, Kathryn Plant, Julie Rolla, Matthew Siegler
Abstract
We present the method of lunar reflection interferometry (LRI) in which a virtual interferometer can be formed by using a spacecraft-borne antenna in lunar orbit that receives both direct rays and those reflected from the lunar surface. The technique exploits the method of images and is akin to the classic "sea cliff" interferometer, with the Moon's surface, primarily the lunar Maria, replacing the ocean surface. We describe the method in detail, demonstrate that significant portions of the Moon's surface are sufficiently smooth at low radio frequencies, ν 10\,MHz, for the technique to work, and outline a spacecraft instrument implementation. We describe potential systematic errors and how they could be mitigated. We present several astrophysics applications of the method.
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