MAVEN spacecraft [NASA – rendering]
Friday June 5, 2026 | WASHINGTON, DC [Posted 5:53 am PT]
by Mary P Brooke | Island Social Trends
NASA’s MAVEN (Mars Atmosphere and Volatile Evolution) has ended after more than 11 years in orbit at Mars and a decade beyond its primary, one-year mission.
The spacecraft was heard last on Dec. 6, 2025 when it experienced an unexpected loss of signal after it passed behind the Red Planet.
NASA held a media teleconference on June 3 to discuss MAVEN’s achievements.
MAVEN spacecraft [NASA – rendering]
Achievements:
MAVEN was the first mission devoted to observing the Martian atmosphere and its evolution.
The MAVEN spacecraft was also an instrumental player in NASA’s Mars Relay Network, communicating data from Mars rovers to Earth.
It also holds the solar system record for most data relayed from another planet in a single day.
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Review board met in February:
The agency had convened an anomaly review board in February to evaluate recovery efforts and assess the spacecraft’s probable current state.
The review board has determined that the MAVEN spacecraft is not recoverable, and it is no longer capable of performing its science and data relay mission, which is consistent with the mission team’s findings.
Telemetry from MAVEN prior to the spacecraft’s passage behind Mars in December showed all subsystems working normally.
After the spacecraft emerged, NASA’s Deep Space Network (DSN) did not observe a signal.
A brief fragment of telemetry data from analysis of radio signals recorded by the DSN’s open-loop receivers indicated the spacecraft was in safe mode and rotating at an unusually high rate when it emerged from behind Mars, indicating a disruption in MAVEN’s orbit trajectory.
The review board concluded that due to this rotation, the batteries on the spacecraft had drained, causing the communications system to lose power and rendering MAVEN in an unrecoverable state.
Root cause still unknown:
These preliminary findings do not address a potential root cause for the anomaly, which still is being investigated, says NASA.
The review board is expected to provide its final report later this year.
Decommissioning:
NASA has begun the official process of decommissioning the MAVEN mission, following standard procedures to archive the full mission dataset for the science and exploration communities.
Reports:
During the mission’s lifetime, MAVEN’s science team produced more than 800 publications, and additional publications are planned.
Science of radiation:
“The science MAVEN has given us is key to informing what kind of radiation protection and safety measures we must take before sending humans to Mars,” said Louise Prockter, director of the Planetary Science Division at NASA Headquarters in Washington.
“The data collected from MAVEN will continue to provide valuable insight into Mars for decades to come,” said Prockter.
Key learnings from MAVEN:
Sun’s impact on Mars
One of MAVEN’s first major results was that the erosion of Mars’ atmosphere increases significantly during solar storms.
The team studied how the solar wind, which is a stream of charged particles continually streaming from the Sun, and solar storms continually strip away Mars’ atmosphere, as well as how this process played a key role in altering the Martian climate from a potentially habitable world to today’s cold, arid planet.
The MAVEN mission made unprecedented strides in advancing our understanding of how the Sun and space weather affect Mars, as it was the only spacecraft that could simultaneously take measurements of both the Sun and the Martian atmospheric response.
Martian light shows
The MAVEN mission discovered several types of auroras that light up when energetic particles plunge into the atmosphere, bombarding gases and making them glow. The MAVEN team showed that protons create new kinds of auroras at Mars.
On Earth, proton auroras only occur in very small regions near the poles, whereas at Mars they can occur everywhere.
Science of aurora on Mars [NASA]
Mars’ atmosphere sputters into space
To better understand how Mars lost most of its atmosphere, MAVEN measured atmospheric sputtering for the first time at any planet. The team did this by observing argon, which is a noble gas, meaning it rarely reacts with other constituents in the Martian atmosphere.
The only significant way it can be removed is by atmospheric sputtering, a process where ions crash into the Martian atmosphere at high enough speeds that they splash gas molecules out of the atmosphere, much like doing a cannonball into a pool. The team used 11 years of data to reveal the presence of sputtered argon at high altitudes in the exact locations that the energetic particles crashed into the atmosphere, showing sputtering in real time.
Understanding Mars’ dusty secrets
In 2018, a series of dust storms created a dust cloud so large that it enveloped the Red Planet. The MAVEN team studied how this “global” dust storm affected Mars’ upper atmosphere to understand how these events affected the escape of water to space. It confirmed that heating from dust storms can loft water molecules far higher into the atmosphere than usual, leading to a sudden surge in water lost to space Chasing comets
In addition to Martian science, MAVEN contributed to NASA’s effort to observe comet 3I/ATLAS at Mars. Over the course of 10 days last year, the MAVEN team designed a new observing campaign to capture 3I/ATLAS by taking multiple images of the comet in several wavelengths, much like using various filters on a camera. Then it snapped high-resolution UV images to identify the hydrogen coming from the comet. By studying a combination of these images, scientists can identify a variety of molecules and better understand the comet’s composition and history.
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