Breakthrough Model Reveals How Nutrients Might Access Europa’s Icy Shell to Nourish Its Hidden Ocean

Geophysicists from Washington State University and Virginia Tech have uncovered a potential pathway for nutrient transport from the radioactive surface of Jupiter’s icy moon, Europa, to its subsurface ocean.

Artist’s concept of the oceans of Jupiter’s moon Europa. Image credit: NASA/JPL-Caltech.

Europa is believed to host more liquid water than all of Earth’s oceans combined, but this vast ocean lies beneath a thick, ice-covered shell that obstructs sunlight.

This ice layer means that any potential life in Europa’s oceans must seek alternative sources of nutrition and energy, raising important questions about how these aquatic environments can support life.

Moreover, Europa is under constant bombardment from intense radiation emitted by Jupiter.

This radiation interacts with salts and other surface materials on Europa, producing nutrients beneficial for marine microorganisms.

While several theories exist, planetary scientists have struggled to determine how nutrient-rich surface ice can penetrate the thick ice shell to reach the ocean below.

Europa’s icy surface is geologically active due to the gravitational forces from Jupiter; however, ice movements primarily occur horizontally rather than vertically, which limits surface-to-ocean exchange.

Dr. Austin Green from Virginia Tech and Dr. Katherine Cooper from Washington State University sought inspiration from Earth to address the surface recycling challenge.

“This innovative concept in planetary science borrows from well-established principles in Earth science,” stated Dr. Green.

“Notably, this approach tackles one of Europa’s persistent habitability questions and offers hope for the existence of extraterrestrial life within its oceans.”

The researchers focused on the phenomenon of crustal delamination, where tectonic compression and chemical densification in Earth’s crust lead to the separation and sinking of crustal layers into the mantle.

They speculated whether this process could be relevant to Europa, especially since certain regions of its ice surface contain dense salt deposits.

Previous investigations indicate that impurities can weaken ice’s crystalline structure, making it less stable than pure ice.

However, delamination requires that the ice surface be compromised, enabling it to detach and submerge within the ice shell.

The researchers proposed that dense, salty ice, surrounded by purer ice, could sink within the ice shell, thereby facilitating the recycling of Europa’s surface and nourishing the ocean beneath.

Using computer simulations, they discovered that as long as the surface ice is somewhat weakened, nutrient-rich ice laden with salts can descend to the bottom of the ice shell.

This recycling process is swift and could serve as a reliable mechanism for providing essential nutrients to Europa’s oceans.

The team’s study has been published in the Planetary Science Journal.

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AP Green and CM Cooper. 2026. Dripping into destruction: Exploring the convergence of viscous surfaces with salt in Europa’s icy shell. Planetary Science Journal 7, 13; doi: 10.3847/PSJ/ae2b6f

Source: www.sci.news

NASA launches Europa Clipper spacecraft towards Jupiter’s icy moons

Europa Clipper launched from NASA's Kennedy Space Center in Florida on October 14, 2024 at 12:06 pm EDT, beginning a six-year journey to Jupiter's icy moon Europa. The spacecraft will fly 49 times, approaching as close as 25 kilometers. Searching for the ingredients of life below the surface (16 miles).

Europa Clipper will lift off from Launch Complex 39A at NASA Kennedy Space Center in Florida on October 14, 2024 at 12:06 pm EDT. Image credit: NASA/Kim Shiflett.

european clipper This is the largest spacecraft ever built by NASA for a planetary mission.

Expanding the giant solar array, the spacecraft could span the length of a basketball court (30.5 meters, or 100 feet, end to end).

“We congratulate the European Clipper team as it begins its first journey to the ocean world beyond Earth,” said NASA Administrator Bill Nelson.

“NASA is a world leader in exploration and discovery, and the Europa Clipper mission is no exception.”

“By exploring the unknown, Europa Clipper will help us better understand whether there is potential for life not only within our solar system, but also on the billions of moons and planets outside the sun. .”

“We couldn't be more excited about the incredible and unprecedented science that NASA's European Clipper mission will bring for generations to come,” said Nikki Fox, associate administrator for the Science Mission Directorate at NASA Headquarters. states.

“All of NASA's science is interconnected, and Europa Clipper's scientific discoveries will help other missions in Jupiter exploration, including Juno, Galileo, and Voyager, explore the possibility of inhabited planets beyond our home planet. We will build on the legacy we have created as we explore possible worlds.”

“We are very happy to be able to send Europa Clipper to explore a potentially habitable ocean world, thanks to all of our colleagues and partners who have worked so hard to date.” said Dr. Laurie Leshin, Director of NASA's Jet Division. Promotion Institute.

“The Europa Clipper will undoubtedly deliver amazing science. It is always bittersweet to send something we have worked so hard on for so many years on its long journey, but this amazing team We know that spacecraft will expand our knowledge of our solar system and provide inspiration for future exploration.”

“As Europa Clipper embarks on its journey, I will reflect on the countless dedications, innovations, and teamwork that made this moment possible,” said Europa Clipper project manager, also at NASA's Jet Propulsion Laboratory. Jordan Evans said.

“This launch is more than just the next chapter in solar system exploration. It is a journey into another ocean, driven by our common curiosity and the quest to answer the question 'Are we alone?' A leap forward to uncover the mysteries of the world. ”

The journey to Jupiter will be a long 2.9 billion kilometers (1.8 billion miles), and instead of heading straight there, Europa Clipper will orbit Mars and then Earth, speeding past it.

The spacecraft is scheduled to begin orbiting Jupiter in April 2030 and begin its 49 science-focused flybys of Europa in 2031 while orbiting the gas giant.

This orbit is designed to take full advantage of the science Europa Clipper can perform and minimize exposure to Jupiter's notoriously intense radiation.

Scientists on the mission will be able to “see” how thick Europa's ice shell is and gain a deeper understanding of the vast ocean beneath.

They will examine surface material that may have come up from below, look for fingerprints of organic compounds that form the building blocks of life, and sample gases emitted by the moon for evidence of habitability. I will.

They will analyze the results and look for signs of a water world that could support life beneath the moon's frozen shell.

“It's important for us to picture what that alien ocean is like, the chemistry and biochemistry that might be going on there,” said Europa Clipper team member said Dr. Morgan Cable, an astrobiologist at NASA's Jet Propulsion Laboratory.

Its research centers on searching for the types of salts, ices, and organic materials that make up the main ingredients of a habitable world.

This is where an imager called MISE (Mapping Imaging Spectrometer for Europa) comes into play.

Operating in the infrared, the spacecraft's MISE splits the reflected light into different wavelengths to identify the corresponding atoms and molecules.

The mission will also use an instrument called E-THEMIS (European Thermal Emission Imaging System), which also operates in infrared, to explore potential sites near Europa's surface where plumes could bring deep-sea material closer to the surface. Attempt to identify hotspots.

The task of the EIS (Europa Imaging System) is to take clear, detailed pictures of Europa's surface using both narrow-image and wide-image cameras.

“EIS imagers will provide incredibly high-resolution images to understand how Europa's surface continues to evolve and change,” said Dr. Cable.

NASA's Cassini mission has discovered giant plumes of water vapor spewing from jets near the south pole of Saturn's icy moon Enceladus.

Europa may also emit a misty column of water drawn from the ocean or from reservoirs within its shell.

The Europa Clipper's instrument, called Europa-UVS (Europa Ultraviolet Spectrograph), can explore the plume and study any material that could be ejected into space.

Regardless of whether Europa has a plume or not, the spacecraft will carry two instruments to analyze small amounts of gas and dust particles ejected from the moon's surface by collisions with micrometeorites and high-energy particles. It has been. MASPEX (MAss SPECtrometer for Planetary Exploration/Europa) and SUDA (Surface Dust Analyzer).

These instruments capture small pieces of material emitted from surfaces and turn them into charged particles that reveal their composition.

“The spacecraft will study the gases and grains emitted by Europa by sticking out its tongue, tasting the grains, and inhaling those gases,” Dr. Cable said.

The mission will also explore Europa's external and internal structures in a variety of ways. That's because both structures have far-reaching implications for the moon's habitability.

To gain insight into the thickness of ice shells and the presence of oceans, as well as their depth and salinity, the mission will measure the moon's induced magnetic field with the ECM (European Clipper Magnetometer) and use that data to analyze currents from flowing charged particles. We plan to combine it with the measured values ​​of . Around Europa — Data provided by PIMS (Plasma Instrument for Magnetic Sounding).

In addition, mission scientists will use REASON (European Assessment and Near-Surface Sounding Radar), which monitors up to 18 miles (29 km) away, to detect every detail from the presence of ocean to ice structure and topography. I plan to investigate. several miles) into the shell. itself a potentially habitable environment.

Measuring the changes that Europa's gravity causes in radio signals should help determine the thickness of the ice and the depth of the ocean.

“Non-ice material on the surface can migrate into deep internal pockets of brine within the ice shell,” said Dr. Steve Vance, a member of the European Clipper team and an astrobiologist at NASA's Jet Propulsion Laboratory.

“Some may be large enough to be considered lakes, or at least ponds.”

“Using the collected data to perform large-scale computer modeling of Europa's internal structure, we may be able to uncover the ocean's composition and estimate its temperature profile.”

“Whatever the situation, the discovery will open a new chapter in the search for extraterrestrial life.”

“The European Clipper is almost certain to raise as many questions as it answers, if not more, in a completely different class than we have been thinking about for the past 25 years.”

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This article is based on a press release provided by NASA.

Source: www.sci.news

European Clipper mission to Jupiter’s icy moons launched by NASA

For decades, Jupiter’s icy moons have been considered one of the most promising places in the solar system to search for extraterrestrial life. Europa, thought to have an underground ocean and a potentially habitable environment, has long been considered an attractive target in our cosmic backyard.

Now humans are ready to take a closer look at Jupiter’s fourth largest moon.

NASA is scheduled to launch a new robotic mission to Jupiter as soon as noon Monday. The probe, named Europa Clipper, is the largest spacecraft the company has ever built for a planetary science mission.

Assuming no further launch delays, Europa Clipper is scheduled to lift off Monday at 12:06 pm ET aboard a SpaceX Falcon Heavy rocket from NASA’s Kennedy Space Center in Florida.

The launch was originally scheduled for Thursday, but NASA was forced to cancel due to Hurricane Milton, which made landfall late Wednesday near Siesta Key along Florida’s west coast. Kennedy Space Center was closed as the storm battered the state, bringing high winds and heavy rain to much of the Florida peninsula.

The delay was a minor setback in a mission that took more than a decade to plan and develop.

“It feels surreal,” said Jordan Evans, mission project manager at NASA’s Jet Propulsion Laboratory. “There were battles at every level, from the early stages of the initial concept of the mission, to getting approval, passing each milestone and overcoming various problems along the way. At this point, the team was ready. It’s incredible to watch.”

Europa Clipper is not embarking on a life-detecting mission. Rather, they will study the composition of the icy moon, as well as its internal structure and geology. This information could help scientists determine whether Europa currently has the right ingredients to support life, or whether they existed at some point.

“We’re looking for a habitable environment,” said Bonnie Blatty, mission deputy project scientist at the Jet Propulsion Laboratory. “We believe that liquid water is a necessity for life, and that it exists. Whether through active geology or something else, we need the right chemistry to act like a battery to propel life. It’s energy.”Parallel.”

Blatty said there is strong scientific evidence that a vast ocean lurks beneath the moon’s icy surface. In fact, Europa’s interior ocean is estimated to be twice the volume of all of Earth’s oceans combined, according to NASA.

A mosaic image of Jupiter’s moon Europa acquired by a camera aboard NASA’s Galileo spacecraft on November 25, 1999.
NASA

Europa Clipper is scheduled to enter Jupiter’s orbit in 2030 after a six-year, 1.8 billion mile journey.

The 49 flybys of the moon over four years will provide researchers with new insights.

“We’ll definitely be able to tell how thick the ice crust is and whether there are small ponds there,” Blatty said. “As for the ocean, I think we will someday find out how deep it is.”

To make these observations, the spacecraft will fly through a harsh radiation environment created by Jupiter’s massive magnetic field, which NASA says is about 20,000 times stronger than Earth’s.

“If we were to go into orbit around Europe and do research, even the most radiation-resistant electronic equipment would likely be destroyed by radiation within a month or two,” Evans said. said.

Instead, mission managers developed a way for the probe to orbit Jupiter in harmony with the icy moon. This is a kind of cosmic duet that could help protect equipment from prolonged exposure to harsh radiation.

“So every six times Europa orbits Jupiter, or every 21 days, we’ll be at a precise position in space, right next to Europa,” Evans said. “And because each flyby will be different, we will be able to cover almost the entire world’s moon.”

However, the team will need to exercise patience. Before reaching Jupiter, the spacecraft will first pass Mars and then circle Earth again, using the gravity of both planets to blast it deep into space.

Europa was discovered in 1610 by Italian astronomer Galileo Galilei. This icy object is the fourth largest of Jupiter’s 95 known moons.

Several space probes have previously observed Europa, including NASA’s Voyager 1, Voyager 2, and Galileo missions, but this will be NASA’s first dedicated mission to the Moon, and will be the first mission for NASA to go beyond Earth. This will be my first time researching the ocean world.

This milestone has been a long time coming for Blatty, who wrote a paper on Europa as a graduate student at Cornell University in the 1980s.

“I’ve actually only been in this role for two and a half years. I didn’t start it,” she said. “But I’m so happy to be back to something so near and dear to my heart. It’s truly a dream.”

Source: www.nbcnews.com

Discover the message NASA is sending to Europa, Jupiter’s icy moon.

Illustration of NASA’s Europa Clipper spacecraft

NASA/JPL-California Institute of Technology

In October, NASA’s Europa Clipper spacecraft will begin a journey to explore Jupiter’s icy moon Europa (imagined above).

NASA has asked METI International, the scientific organization I lead, to leverage our expertise in trying to make contact with extraterrestrial intelligence by creating a symbolic engraved tantalum plate on a spacecraft. We asked them to help us create a message, a greeting from one water world to another.

We helped create two parts of the message. First, we collected a globally representative sample of recordings of water words in 103 languages. Each language is displayed as a waveform on the outside of the panel (pictured above) that protects sensitive scientific equipment.

On the other, inward-looking side (see below), we designed the scientific part of the message. This refers to water in terms of the “water hole,” a frequency band between the hydrogen and hydroxyl (combining to form water) emission lines in the radio spectrum where many of the early searches for intelligence beyond Earth took place. I’m explaining.

Other parts of the internal message include: Drake equation to estimate the number of extraterrestrial civilizations in the galaxy. Microchips containing the names of 2.6 million supporters will be added soon.and Poet Laureate of the United States Ada Limon’s Poem to Europa ends like this. “O second moon, we too / are made of water, of a vast, beckoning ocean… / of the need to call out in the darkness.” The European Clipper will fly to Jupiter in April 2030. We are planning to enter the orbit of

douglas vacochChairman of Ministry of Economy, Trade and Industry International

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Source: www.newscientist.com

Study suggests Mimas, one of Saturn’s moons, could be responsible for forming Earth’s oceans beneath its icy shell

From a detailed analysis of Mimas’s orbital motion based on data from NASA’s Cassini mission, planetary researchers from the Sorbonne, the University of Nantes, Queen Mary University of London, Franche-Comte University, and Jinan University have discovered that the heavily cratered They showed that some ice shells hide recently formed ice shells. (less than 2-3 million years ago) global ocean 20-30 km deep.



The surface of Mimas, like the surfaces of other major Saturn moons that do not have atmospheres, is not pure ice but contains some black impurities. Relatively dark markings appear along the lower part of the walls of the 130km-wide Herschel Crater (the crater's central peak is about the same height as Mount Everest); the impact may have all but destroyed the Moon. there is). some small craters. Scientists interpret the darkening as evidence that the impurities have gradually become concentrated as icy material evaporates in areas where they are slowly sliding down the crater walls. Image credit: NASA / JPL / Space Science Institute.

There is growing evidence that some moons may have oceans beneath their surfaces, but such watery worlds are difficult to detect.

Mimas — Saturn's innermost and smallest (radius = 198.2 km, or 123 miles) regular moon — is an unlikely candidate due to the different nature of its surface compared to other icy moons such as Enceladus .

This theory has been challenged by Sorbonne University researcher Valerie Rainey and others who are evaluating Cassini's observations of small satellites.

Previous research suggests two possibilities inside Mimas. It is either an elongated rocky core or a global ocean.

A new study reveals that the small moon's rotational motion and orbit change due to internal influences.

For the solid-state model to apply, the rock core must be elongated and approximately pancake-shaped, which is inconsistent with observations.

Rather, measurements of Mimas' position suggest that the evolution of its orbit is better explained as influenced by an internal ocean.

The researchers calculate that the ocean lies beneath an ice shell about 20 to 30 kilometers deep.

Their simulations suggest that it appeared between 25 and 2 million years ago.

Therefore, signs of such an underground ocean would not have had time to leave traces on the surface.

This result suggests that recent processes on Mimas may have been common during the early stages of the formation of other ice worlds.

“Mimas was a small moon with a cratered surface and no sign of an ocean hidden beneath,” said co-author Nick Cooper, a researcher at Queen Mary University of London. the doctor said.

“With this discovery, Mimas joins an exclusive club of moons with inland oceans, including Enceladus and Europa, but with a unique difference: its oceans are surprisingly young.”

of study Published in today's magazine Nature.

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V. Rainey other. 2024. A recently formed ocean within Saturn's moon Mimas. Nature 626, 280-282; doi: 10.1038/s41586-023-06975-9

Source: www.sci.news

Europa Clipper Set to Launch to Jupiter in 2024 for Exploration of Icy Moons

NASA/JPL-California Institute of Technology/Gregory M. M. Weigand

NASA’s European Clipper mission will launch in October 2024 and head to Jupiter’s moon Europa, where it will search for signs that the icy moon may be suitable for life.

The spacecraft will not be orbiting Europa when it arrives in 2030, but will instead orbit Jupiter in a way that will allow it to repeatedly pass the moon at a distance of nearly 25 kilometers from the planet’s surface.

“We’re going to get a really comprehensive assessment of what Europa is like,” he says. jennifer scully at NASA’s Jet Propulsion Laboratory in California.

Of the moon’s many mysteries, perhaps the most important are the structure of its internal oceans and whether it is habitable. The Clipper won’t be able to search for life itself, but it will set the stage for possible future missions.

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Source: www.newscientist.com