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Updated: Jan 6, 2026

Simulating Imaging of Large Scale Radio Arrays on the Lunar Surface
Published on: July 30, 2020
Peering through Jupiter's clouds with radio spectral imaging
Imke de Pater1, R J Sault2, Bryan Butler3
1Department of Astronomy, 501 Campbell Hall, University of California, Berkeley, CA 94720, USA. Faculty of Aerospace Engineering, Delft University of Technology, 2629 HS Delft, Netherlands. SRON Netherlands Institute for Space Research, 3584 CA Utrecht, Netherlands.
Abstract:
Radio wavelengths can probe altitudes in Jupiter's atmosphere below its visible cloud layers. We used the Very Large Array to map this unexplored region down to ~8 bar, ~100 kilometers below the visible clouds. Our maps reveal a dynamically active planet at pressures less than 2 to 3 bar. A radio-hot belt exists, consisting of relatively transparent regions (a low ammonia concentration, NH3 being the dominant source of opacity) probing depths to over ~8 bar; these regions probably coincide with 5-micrometer hot spots. Just to the south we distinguish an equatorial wave, bringing up ammonia gas from Jupiter's deep atmosphere. This wave has been theorized to produce the 5-micrometer hot spots; we observed the predicted radio counterpart of such hot spots.
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