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Thermal anomaly discovered below Mars' south pole

Thermal anomaly discovered below Mars' south pole

phys.org 26.08.2026 22:20 7 views
Researchers have discovered a thermal asymmetry deep beneath the surface across Mars' southern hemisphere. Based on gravitational measurements that provide clues to the Red Planet's interior structure, Mars' southern int

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: Researchers have discovered a thermal asymmetry deep beneath the surface across Mars' southern hemisphere. Based on gravitational measurements that provide clues to the Red Planet's interior structure, Mars' southern interior is around 200 to 400 degrees Celsius warmer than the planet's northern half and partially molten.

The surprising finding adds context to Martian history and the periods during which it may have hosted conditions favorable for life. The research was led by Caltech alumnus Alexander Berne (Ph.D. '26), who is now a postdoctoral associate at the University of Arizona. The findings are reported in a paper appearing in the journal Nature.

During his graduate studies at Caltech, Berne developed a model that uses variations in gravitational data to infer the structure of a planetary body's interior. Berne and his collaborators then aimed to apply the model to understanding Mars' interior. Using data collected over decades from three different Mars missions—Mars Global Surveyor, Mars Odyssey and Mars Reconnaissance Orbiter—the team measured tiny variations in the spacecraft's velocities and used them to reconstruct the gravitational field around Mars.

The gravitational forces exerted by the sun on Mars vary over seasonal timescales as a result of Mars' slightly elliptical orbit and tilted rotation axis. A technique called tidal tomography measures how those gravitational signatures vary over time and produces a model of the planet's interior. "Scientists usually assume that the interiors of planetary bodies are generally spherically symmetric, but this is not necessarily true," Berne says.

"As we get more gravity data, we can determine the three-dimensional intricacies of a planet's interior structure. These inferences, in turn, give us a blueprint for designing future missions and scientific exploration of these worlds. Understanding the interior structure of planetary bodies helps us unravel the processes that shaped their formation and evolution." On the surface, Mars is a geologically asymmetrical planet: Its southern hemisphere contains towering mountains and deep craters, whereas the northern hemisphere is composed of low-lying flatlands.

In the new study, the team was surprised to discover that Mars' interior is also thermally asymmetric—the southern hemisphere is hundreds of degrees hotter than the north. The new observation also suggests explanations for other phenomena observed on Mars, such as magnetic anomalies found in iron minerals in the south. A thermal anomaly in the southern mantle could mean that a magnetic field existed that was strong enough to cause magnetic differences between the north and south.

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