arXiv · 1306.0350
Lunar Imaging and Ionospheric Calibration for the Lunar Cherenkov Technique
Abstract
The Lunar Cherenkov technique is a promising method for UHE neutrino and cosmic ray detection which aims to detect nanosecond radio pulses produced during particle interactions in the Lunar regolith. For low frequency experiments, such as NuMoon, the frequency dependent dispersive effect of the ionosphere is an important experimental concern as it reduces the pulse amplitude and subsequent chances of detection. We are continuing to investigate a new method to calibrate the dispersive effect of the ionosphere on lunar Cherenkov pulses via Faraday rotation measurements of the Moon's polarised emission combined with geomagnetic field models. We also extend this work to include radio imaging of the Lunar surface, which provides information on the physical and chemical properties of the lunar surface that may affect experimental strategies for the lunar Cherenkov technique.
Explore related subjects
Keep this discovery
Rebecca McFadden, Olaf Scholten, Maaijke Mevius. 2013-06-03. Lunar Imaging and Ionospheric Calibration for the Lunar Cherenkov Technique. https://doi.org/10.1063/1.4807516
Cite the original work for its findings. Save a collection to share your selection of sources.