Ring system discovered around dwarf planet Quaoar leaves astronomers puzzled
- Reference: 1675943405
- News link: https://www.theregister.co.uk/2023/02/09/dwarf_planet_ring_system/
- Source link:
Quaoar lies in the Kuiper belt beyond Neptune. The icy rock is 1,121 kilometers (697 miles) wide, about half the diameter of Pluto. Quaoar is a distant object with interesting properties, including signs it may harbor ice-spewing volcanoes and a ring system.
Debris compressed into rings orbiting planets are found around the gas giants Saturn, Jupiter, Uranus and Neptune, and dwarf planets Chariklo and Haumea. All the ring systems lie relatively close to their host planets within a distance known as the Roche limit.
[1]
The Roche limit states that ring systems can only form within a distance where the tidal forces from a larger body are more powerful than a smaller object's own gravitational forces. In short, debris captured inside a planet's Roche limit will be ripped apart and compressed into a ring system. Any material outside this distance, however, will more likely stick together under gravity and form a moon instead.
[2]
Quaoar ring system (Credit: ESA, CC BY-SA 3.0 IGO)
Quaoar, however, breaks this rule. Its ring system is intact at orbits at a distance over seven times the dwarf planet's radius. Saturn's ring system is located at a distance only three times its radius, for comparison. Now astronomers are puzzled over how such a ring system can survive so far from its parent body.
"It was unexpected to discover this new ring system in our Solar System, and it was doubly unexpected to find the rings so far out from Quaoar, challenging our previous notions of how such rings form," [3]said Vik Dhillon, co-author of the research [4]published in Nature and a physics and astronomy professor from the University of Sheffield.
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A team of researchers observed Quaoar over 2018 to 2021 using ground-based telescopes and ESA's CHEOPS spacecraft. Data measuring the dimming of background stars as the dwarf planet passed in front of them showed two dips, suggesting there is something else around the object blocking sunlight.
Bruno Morgado, lead author of the paper and a researcher from the Universidade Federal do Rio de Janeiro, Brazil, combined different sources of data taken from other observatories and by citizen scientists to figure out what might be lurking around Quaoar. The ring system is too small and faint to directly image.
[9]
"When we put everything together, we saw drops in brightness that were not caused by Quaoar, but that pointed to the presence of material in a circular orbit around it. The moment we saw that we said, 'Okay, we are seeing a ring around Quaoar,'" he [10]said in a statement.
Astronomers are now puzzled at how such a ring system can survive so far from its parent planet.
[11]
"What is so intriguing about this discovery around Quaoar is that the ring of material is much farther out than the Roche limit. As a result of our observations, the classical notion that dense rings survive only inside the Roche limit of a planetary body must be thoroughly revised," Giovanni Bruno, co-author of the paper and a researcher at the INAF's Astrophysical Observatory of Catania, Italy, added.
The Register has asked the researchers for comment. ®
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[2] https://regmedia.co.uk/2023/02/08/quaoar_ring_system.jpg
[3] https://www.sheffield.ac.uk/news/new-ring-system-discovered-our-solar-system
[4] https://www.nature.com/articles/s41586-022-05629-6
[5] https://www.theregister.com/2023/01/27/asteroid_2023_bu/
[6] https://www.theregister.com/2023/01/12/jwst_confirms_its_first_exoplanet/
[7] https://www.theregister.com/2023/01/04/prehistoric_comet_makes_nakedeye_return/
[8] https://www.theregister.com/2022/12/08/hidden_galaxy_revealed/
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[10] https://www.esa.int/Science_Exploration/Space_Science/Cheops/ESA_s_Cheops_finds_an_unexpected_ring_around_dwarf_planet_Quaoar
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[12] https://whitepapers.theregister.com/
Obviously
It's made from scrith. Keep an eye out for Protectors.
Re: Obviously
"As a result of our observations, the classical notion that dense rings survive only inside the Roche limit of a planetary body must be thoroughly revised," - Giovanni Bruno
This is a good illustration of the situation that when we see 'problems' then studying them hard can result in us getting a better view of events, not just astronomically but in virtually every situation. I have always found problems to be very helpful in educating me about things that I'd never thought about before.
Re: Obviously
Paging Mr Brennan, could Mr Jack Brennan please make himself known.
Looking forward to this sort of stuff in KSP2
Properly married to their work..
These astronomers. They even put a ring on it.....
Mines the one with the towel in the pocket, I'll see myself out.
shepherds?
A couple of small moons if in the right place would shepherd debris in to a ring between them.
Also on the Roche limit thing, Saturn's inner moons orbit within the rings so plainly rings and moons can exist in similar orbits.
Re: shepherds?
That's no moon.
(looks the closest to Skywalker, A, just not very) -->
Re: shepherds?
I've got a bad feeling about this ... and that's just your icon
Ice volcanos beyond Pluto ?
Okay, Space is wierd and very, very large, but if it's already wierd that a 1,100 km-wide ball of stuff has a ring system, it is absolutely mind-boggling that it might have cryovolcanoes.
Jupiter's moon [1]Io has volcanoes, but that's because Jupiter's gravitational field is literally mushing up that little pizza ball. Quaoar does not have such a luxury, and I very much doubt the Sun can be counted on for melting its surface enough at that distance to encourage icy volcanic activity.
So, if this stuff is confirmed - and it still has to be, apparently - then astrophysicists are going to have a hell of a time explaining how a dead ball of ice deep in the freezer of space can be active enough to spout frozen geysers that manage to create a ring in such conditions.
This is going to be a mind-bender of major proportions.
[1] https://en.wikipedia.org/wiki/Io_(moon)
Re: Ice volcanos beyond Pluto ?
...how a dead ball of ice deep in the freezer of space ... manage to create a ring in such conditions...
Impact debris.
Re: Ice volcanos beyond Pluto ?
It can all be explained by the discovery of a new Element, I call it Chillianium. It's so spicy radioactive, that it can cause eruptions from even the most unexpected places...
Has anyone....
Told Master Chief?
Re: Has anyone....
They tried, but like everyone else, he's switched Cortana off.
If the inhabitants of the planet (comma) don’t look like chicken carcasses (semi-colon) and can’t help us with our punctuation (full stop) then I’m going to be very disappointed (exclamation mark)
Er ...
I suspect "(full stop)" should be "(comma)".
Re: Er ...
Can we be sure its not a ring of Smegging garbage pods?
Icon - Cloister the Stupid making his glorious return!
Picture
is that a mote I see?
Q?
He has settled down now he doesn't play with the Enterprise and has got engaged.
We already know
No need to speculate, there is already an explanation in Nature: https://www.nature.com/articles/s41586-022-05629-6
"Our local collisional simulations show that elastic collisions, based on laboratory experiments [8], can maintain a ring far away from the body. Moreover, Quaoar’s ring orbits close to the 1/3 spin–orbit resonance [9] with Quaoar, a property shared by Chariklo’s [2,10,11] and Haumea’s [3] rings, suggesting that this resonance plays a key role in ring confinement for small bodies."
Re: We already know
^ Exactly this, and if a ring system has only relatively recently been established as a result of collision of some sort then it will give the appearance of persistence irrespective of any long term spin-orbit resonance that will preserve the phenomenon.
Trouble ahead
It seems Quaoar failed to read the rules of material acquisition and is now being investigated by the Supreme Being
The article mentioned in Nature posted by Timo Karjalainen makes sense. Perhaps part of the reason is the ring composition is of such small debris the Roche limit is farther than for Saturn?
continuous injection of momentum from the cryovolcanic ejecta might be involved
Did you hear about Pluto?
Messed up...