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    Home»Space»Hubble Telescope Views Vivid Auroras in Jupiter’s Atmosphere
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    Hubble Telescope Views Vivid Auroras in Jupiter’s Atmosphere

    By European Space Agency; NASAJune 30, 2016No Comments4 Mins Read
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    Hubble Captures Vivid Auroras in Jupiter’s Atmosphere
    Astronomers are using NASA’s Hubble Space Telescope to study auroras — stunning light shows in a planet’s atmosphere — on the poles of the largest planet in the solar system, Jupiter.

    Using the Hubble Space Telescope, astronomers view vivid auroras on the poles of Jupiter.

    Jupiter, the largest planet in the solar system, is best known for its colorful storms, the most famous being the Great Red Spot. Now astronomers have focused on another beautiful feature of the planet, using Hubble’s ultraviolet capabilities.

    The extraordinary vivid glows shown in the new observations are known as auroras. They are created when high-energy particles enter a planet’s atmosphere near its magnetic poles and collide with atoms of gas. As well as producing beautiful images, this program aims to determine how various components of Jupiter’s auroras respond to different conditions in the solar wind, a stream of charged particles ejected from the sun.

    This observation program is perfectly timed as NASA’s Juno spacecraft is currently in the solar wind near Jupiter and will enter the orbit of the planet in early July 2016. While Hubble is observing and measuring the auroras on Jupiter, Juno is measuring the properties of the solar wind itself; a perfect collaboration between a telescope and a space probe.

    “These auroras are very dramatic and among the most active I have ever seen,” said Jonathan Nichols from the University of Leicester, U.K., and principal investigator of the study. “It almost seems as if Jupiter is throwing a firework party for the imminent arrival of Juno.”


    This time-lapse video of the vivid auroras in Jupiter’s atmosphere was created using far-ultraviolet-light observations made on May 19, 2016, with the Space Telescope Imaging Spectrograph aboard NASA’s Hubble Space Telescope. Hubble is particularly suited to observing and studying the auroras on the biggest planet in the solar system, as they are brightest in the ultraviolet.

    To highlight changes in the auroras Hubble is observing Jupiter almost daily for several months. Using this series of far-ultraviolet images from Hubble’s Space Telescope Imaging Spectrograph, it is possible for scientists to create videos that demonstrate the movement of the vivid auroras, which cover areas bigger than Earth.

    Not only are the auroras huge in size, they are also hundreds of times more energetic than auroras on Earth. And, unlike those on Earth, they never cease. While on Earth the most intense auroras are caused by solar storms — when charged particles rain down on the upper atmosphere, excite gases and cause them to glow red, green and purple — Jupiter has an additional source for its auroras.

    The strong magnetic field of the gas giant grabs charged particles from its surroundings. This includes not only the charged particles within the solar wind but also the particles thrown into space by its orbiting moon Io, known for its numerous and large volcanoes.

    The new observations and measurements made with Hubble and Juno will help to better understand how the sun and other sources influence auroras. While the observations with Hubble are still ongoing and the analysis of the data will take several more months, the first images and videos are already available and show the auroras on Jupiter’s north pole in their full beauty.


    This composite video illustrates the auroras on Jupiter relative to their position on the giant planet. As on Earth, auroras are produced by the interaction of a planet’s magnetic field with its atmosphere. The Jupiter auroras observed by NASA’s Hubble Space Telescope are some of the most active and brightest ever caught by Hubble, reaching intensities over a thousand times brighter than those seen on Earth. Hubble’s sensitivity to ultraviolet light captures the glow of the auroras above Jupiter’s cloud top.

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    Astronomy European Space Agency Hubble Space Telescope Juno Spacecraft Jupiter NASA Planetary Science Popular
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