Southwest Analysis Institute scientists have compiled 41 solar occultation observations of Saturn’s rings from the Cassini mission. The compilation, revealed lately within the journal Icarus, will inform future investigations of the particle dimension distribution and composition of Saturn’s rings, key parts to understanding their formation and evolution.
“For almost twenty years, NASA’s Cassini spacecraft shared the wonders of Saturn and its household of icy moons and signature rings, however we nonetheless do not definitively know the origins of the ring system,” mentioned Dr. Stephanie Jarmak, a researcher within the SwRI Area Science Division. “Proof signifies that the rings are comparatively younger and will have fashioned from the destruction of an icy satellite or a comet. Nonetheless, to help anyone origin principle, we have to have a good suggestion of the scale of particles making up the rings.”
Cassini’s Ultraviolet Imaging Spectrograph (UVIS) was uniquely delicate to among the smallest ring particles, notably with the observations it made within the excessive ultraviolet wavelength.
To find out the scale of the ring particles, UVIS noticed them when the instrument was pointed on the sun, wanting via the rings in what is named a solar occultation. Ring particles partially blocked the trail of the sunshine, offering a direct measurement of the optical depth, a key parameter for figuring out the scale and composition of the ring particles.
“Given the wavelength of the sunshine coming from the sun, these observations gave us perception into the smallest particle sizes with Saturn’s rings,” Jarmak mentioned. “UVIS can detect dust particles on the micron degree, serving to us perceive the origin, collisional exercise and destruction of the ring particles inside the system.”
The compilation additionally delves into the variations within the optical depth of occultation observations, which may help decide particle size and composition. Throughout an occultation, gentle emitted by a background supply, such because the sun, is absorbed and scattered by the particles within the gentle’s path. The quantity of sunshine blocked by ring particles supplies a direct measurement of the ring optical depth.
Together with optical depth is important to understanding the construction of the rings. The analysis measured the optical depth as a operate of the viewing geometry, which refers back to the statement angles of the ring system with respect to the Cassini spacecraft. As gentle passing via the rings adjustments at varied angles, scientists can kind an image of the rings’ buildings.
“Ring programs round giant planets additionally present take a look at beds for investigating elementary bodily properties and processes in our solar system usually,” Jarmak mentioned. “These particles are thought to outcome from objects colliding and forming in a disk and increase bigger particles. Understanding how they kind these ring programs may assist us perceive how planets kind as effectively.”
The paper seems in Icarus.
S.G. Jarmak et al, Photo voltaic occultation observations of Saturn’s rings with Cassini UVIS, Icarus (2022). DOI: 10.1016/j.icarus.2022.115237
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Scientists compile Cassini’s distinctive observations of Saturn’s rings (2022, October 18)
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