Cassini Spacecraft: Top Discoveries
Our Cassini spacecraft has been exploring Saturn, its stunning rings and its strange and beautiful moons for more than a decade.
Having expended almost every bit of the rocket propellant it carried to Saturn, operators are deliberately plunging Cassini into the planet to ensure Saturnβs moons will remain pristine for future exploration β in particular, the ice-covered, ocean-bearing moon Enceladus, but also Titan, with its intriguing pre-biotic chemistry.
Letβs take a look back at some of Cassiniβs top discoveries: Β
Titan
Under its shroud of haze, Saturnβs planet-sized moon Titan hides dunes, mountains of water ice and rivers and seas of liquid methane. Of the hundreds of moons in our solar system, Titan is the only one with a dense atmosphere and large liquid reservoirs on its surface, making it in some ways more like a terrestrial planet.
Both Earth and Titan have nitrogen-dominated atmospheres β over 95% nitrogen in Titanβs case. However, unlike Earth, Titan has very little oxygen; the rest of the atmosphere is mostly methane and traced amounts of other gases, including ethane.
There are three large seas, all located close to the moonβs north pole, surrounded by numerous smaller lakes in the northern hemisphere. Just one large lake has been found in the southern hemisphere.
Enceladus
The moon Enceladus conceals a global ocean of salty liquid water beneath its icy surface. Some of that water even shoots out into space, creating an immense plume!
For decades, scientists didnβt know why Enceladus was the brightest world in the solar system, or how it related to Saturnβs E ring. Cassini found that both the fresh coating on its surface, and icy material in the E ring originate from vents connected to a global subsurface saltwater ocean that might host hydrothermal vents.
With its global ocean, unique chemistry and internal heat, Enceladus has become a promising lead in our search for worlds where life could exist.
Iapetus
Saturnβs two-toned moon Iapetus gets its odd coloring from reddish dust in its orbital path that is swept up and lands on the leading face of the moon.
The most unique, and perhaps most remarkable feature discovered on Iapetus in Cassini images is a topographic ridge that coincides almost exactly with the geographic equator. The physical origin of the ridge has yet to be explainedβ¦
It is not yet year whether the ridge is a mountain belt that has folded upward, or an extensional crack in the surface through which material from inside Iapetus erupted onto the surface and accumulated locally.
Saturnβs Rings
Saturnβs rings are made of countless particles of ice and dust, which Saturnβs moons push and tug, creating gaps and waves.
Scientists have never before studied the size, temperature, composition and distribution of Saturnβs rings from Saturn obit. Cassini has captured extraordinary ring-moon interactions, observed the lowest ring-temperature ever recorded at Saturn, discovered that the moon Enceladus is the source for Saturnβs E ring, and viewed the rings at equinox when sunlight strikes the rings edge-on, revealing never-before-seen ring features and details.
Cassini also studied features in Saturnβs rings called βspokes,β which can be longer than the diameter of Earth. Scientists think theyβre made of thin icy particles that are lifted by an electrostatic charge and only last a few hours. Β
Auroras
The powerful magnetic field that permeates Saturn is strange because it lines up with the planetβs poles. But just like Earthβs field, it all creates shimmering auroras.
Auroras on Saturn occur in a process similar to Earthβs northern and southern lights. Particles from the solar wind are channeled by Saturnβs magnetic field toward the planetβs poles, where they interact with electrically charged gas (plasma) in the upper atmosphere and emit light. Β
Turbulent Atmosphere
Saturnβs turbulent atmosphere churns with immense storms and a striking, six-sided jet stream near its north pole.
Saturnβs north and south poles are also each beautifully (and violently) decorated by a colossal swirling storm. Cassini got an up-close look at the north polar storm and scientists found that the stormβs eye was about 50 times wider than an Earth hurricaneβs eye.
Unlike the Earth hurricanes that are driven by warm ocean waters, Saturnβs polar vortexes arenβt actually hurricanes. Theyβre hurricane-like though, and even contain lightning. Cassiniβs instruments have βheardβ lightning ever since entering Saturn orbit in 2004, in the form of radio waves. But it wasnβt until 2009 that Cassiniβs cameras captured images of Saturnian lighting for the first time.
Cassini scientists assembled a short video of it, the first video of lightning discharging on a planet other than Earth.
Cassiniβs adventure will end soon because itβs almost out of fuel. So to avoid possibly ever contaminating moons like Enceladus or Titan, on Sept. 15 it will intentionally dive into Saturnβs atmosphere.
The spacecraft is expected to lose radio contact with Earth within about one to two minutes after beginning its decent into Saturnβs upper atmosphere. But on the way down, before contact is lost, eight of Cassiniβs 12 science instruments will be operating! More details on the spacecraftβs final decent can be found HERE.
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