Recent NASA Hubble Space Telescope images show the gas
giant Saturn and its southern pole, where astronomers have discovered a
10-sided atmospheric wave. Observations show the decagon extends through
multiple layers of Saturn’s atmosphere.
Image: NASA, ESA, STScI, Agustin Sánchez-Lavega (UPV),
Amy Simon (NASA-GSFC), Michael Wong (UC Berkeley); Image Processing: Alyssa
Pagan
Recent observations
with NASA’s Hubble Space Telescope have
revealed a giant, evolving, 10-sided atmospheric wave encircling Saturn's south
pole. This discovery marks the first time a large, regular-sided jet pattern
has been observed in the planet's southern hemisphere. The feature appears
remarkably similar to Saturn's famous hexagon at its northern pole, but is also distinctly different, suggesting scientists may be
witnessing a new atmospheric phenomenon develop on the iconic gas giant.
The results published Wednesday in the journal Science Advances.
By piecing together several years of
Hubble observations dating back to 2023, researchers found subtle hints of the
structure beginning to emerge before it became a clearly defined pattern. Those
observations were taken as part of Hubble’s Outer Planet Atmospheres Legacy
(OPAL) program, which has photographed the outer planets annually for more than a decade.
"We've never seen anything quite
like this in Saturn's southern hemisphere," said Amy Simon, study
co-author and OPAL principal investigator, NASA's Goddard Space Flight Center
in Greenbelt, Maryland. "The northern hexagon has been there every time
we've looked for more than 40 years. This feature is different — it appears to
be strengthening, giving us the rare opportunity to watch a giant atmospheric
pattern develop."
The discovery was possible because
Saturn's changing seasons gradually brought the planet's south pole back into
view from Earth, where astronomers who collectively analyze images of Saturn
from ground-based observatories first identified it.
Agustín Sánchez-Lavega, lead author of
the new study, is a researcher at the University of the Basque Country in
Spain. The university manages a website, called Planetary Virtual Observatory Laboratory, that accepts ground-based images of solar system planets contributed
by observers all over the world. It was in those images, first in 2024, that
Sánchez-Lavega and amateur astronomers Trevor Barry and Jean-Paul Oger noticed
a subtle undulating band along the southern pole. Additional 2025 imagery taken
from the ground hinted even more strongly toward this decagon structure.
That’s when the Hubble observations come
into the picture. Hubble’s view from space offers unmatched image sharpness and
spatial resolution over full rotations of Saturn, without smearing by Earth’s
atmosphere.
“Given Saturn’s symmetry in its
north-south jet stream system, we have been searching for a counterpart to
Saturn’s northern hexagon on the south pole in Hubble images since 1990,”
Sánchez-Lavega said. “Images from NASA’s Cassini spacecraft, which orbited
Saturn between 2004 and 2017, showed no inkling of a long-lived formation,
either. The
Hubble data confirmed the feature’s presence back to 2023.”
A
single filter from NASA’s Hubble Space Telescope distinctly shows a 10-sided
wave encircling Saturn’s south pole, labeled “decagon”. An “X” denotes where
data was not captured.
Image: NASA, ESA, STScI, Agustin Sánchez-Lavega (UPV), Amy Simon (NASA-GSFC), Michael Wong (UC Berkeley); Image Processing: Alyssa Pagan
The wave sits within
one of Saturn's powerful jet streams and extends through multiple layers of the
atmosphere, indicating it is not just a cloud-level feature, but a vertically
extended atmospheric structure. The decagon’s apparent position shifts slightly,
because Hubble captures images from different wavelengths. Those different
wavelengths probe different altitudes in Saturn's atmosphere.
“The most intriguing part to me is that
this seems to have just formed recently,” said Simon. “The question is, why did
it suddenly form now when we haven't seen one before?”
The authors say further study is needed
from Hubble and NASA’s James Webb Space Telescope, as well as analysis of computer models, to understand how the decagon
formed, how long it may last, and how it compares to the long-lived hexagon in
the north.
Hubble’s long duration in operation has
allowed astronomers to track changes over time in solar system planets and other astronomical objects as well.
Rather than providing a single snapshot,
the OPAL program allows scientists to follow seasonal changes, track
short-lived storms, and identify other atmospheric features that evolve slowly
over time.
"When we started the OPAL program,
we expected compelling surprises, but we didn't know what to expect
specifically,” said Mike Wong, study co-author, University of California,
Berkeley. “A lot of the discoveries we see coming from OPAL are not just based
on one observation, but on years and years of data. Regular observations over
time are enabling a lot of new findings."
The team plans to continue observing
Saturn to determine whether the decagon settles into a long-lived, stable
configuration like the northern hexagon or continues to evolve. Future
observations also could help scientists determine what drives the wave, what it
reveals about the atmospheric dynamics of giant planets throughout the solar
system, and how they may relate to those we see here on Earth.
The Hubble Space Telescope has been operating for more than three decades and continues to make ground-breaking discoveries that shape our fundamental understanding of the universe. Hubble is a project of international cooperation between NASA and ESA (European Space Agency). NASA’s Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope and mission operations. Lockheed Martin Space also supports mission operations at Goddard. The Space Telescope Science Institute in Baltimore, which is operated by the Association of Universities for Research in Astronomy, conducts Hubble science operations for NASA.
Source: NASA's Hubble Tracks New Decagon Encircling Saturn’s South Pole - NASA Science


No comments:
Post a Comment