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Amazing Images of Jupiter

Color view of Jupiter's north polar region from NASA's Juno spacecraft (Image: NASA/JPL-Caltech/SwRI/MSSS)

Color view of Jupiter’s north polar region from NASA’s Juno spacecraft (Image: NASA/JPL-Caltech/SwRI/MSSS)

A close-up view of Jupiter's southern hemisphere and overlaid with a latitude/longitude (smaller image). (Image: NASA/JPL-Caltech/SwRI/MSSS)

A close-up view of Jupiter’s southern hemisphere, overlaid with a latitude/longitude (smaller image). (Image: NASA/JPL-Caltech/SwRI/MSSS)

According to Scott Bolton, principal investigator of Juno from the Southwest Research Institute in San Antonio the  north pole of Jupiter looks like nothing seen or imagined before.  It’s bluer in color up there than other parts of the planet, and there are a lot of storms. Clouds have shadows, possibly indicating that the clouds are at a higher altitude than other features.

The southern aurora of Jupiter, as captured by NASA's Juno spacecraft on August 27, 2016. (Image: NASA/JPL-Caltech/SwRI/ASI/INAF/JIRAM)

The southern aurora of Jupiter, as captured by NASA’s Juno spacecraft on August 27, 2016. (Image: NASA/JPL-Caltech/SwRI/ASI/INAF/JIRAM)

The Jovian Infrared Auroral Mapper (JIRAM), supplied by the Italian Space Agency, gave the first infrared close-ups of the planet. According to Alberto Adriani, JIRAM co-investigator, these first infrared views of Jupiter’s north and south poles are revealing warm and hot spots that have never been seen before. No other instruments, both from Earth or space, have been able to see the southern aurora which appears to be very bright and well-structured. The high level of detail in the images will allow astronomers to better study the aurora’s morphology and dynamics.

Bill Kurth, co-investigator for the Waves instrument from the University of Iowa is very enthusiastic: “Waves detected the signature emissions of the energetic particles that generate the massive auroras which encircle Jupiter’s north pole.” According to the astronomer these emissions are the strongest in the solar system. “Now we are going to try to figure out where the electrons come from that are generating them.”

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