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Rivers of magma once bubbled beneath crust of Mars, research suggests

Source: The Guardian Published Wed, 22 Jul 2026 05:00:07 GMT
Rivers of magma once bubbled beneath crust of Mars, research suggests

Why This Matters

Key context: <p>Finding widens selection of rocky planets that may once have been habitable</p><p>Mars once had rivers of magma bubbling beneath its crust, <a href="https://www.ox.ac.uk/news/2026-06-24-new-evidence-suggests-vast-hidden-magma-systems-inside-mars">new research</a> suggests. The surprise find makes it more probable that Mars could have supported life and widens the selection of rocky planets that may once have been habitable.</p><p>Researchers at the University of Oxford studied data gathered by <a href="https://science.nasa.gov/mission/insight/">Nasa’s Insight Lander</a>, which recorded seismic waves caused by meteorite impacts and Martian quakes. They used the seismic data to analyse a mysterious boundary 15 miles (24km) below the surface of Mars. Their findings, published in <a href="https://www.nature.com/articles/s41550-026-02907-5">Nature Astronomy</a>, showed that the most likely cause for this boundary was molten rock pooling deep underground and stretching sideways for hundreds or even thousands of miles.</p> <a href="https://www.theguardian.com/science/2026/jul/22/magma-rivers-beneath-mars-crust-study">Continue reading...</a> This development from The Guardian highlights ongoing changes in the sector.

Finding widens selection of rocky planets that may once have been habitableMars once had rivers of magma bubbling beneath its crust, new research suggests. The surprise find makes it more probable that Mars could have supported life and widens the selection of rocky planets that may once have been habitable.Researchers at the University of Oxford studied data gathered by Nasa’s Insight Lander, which recorded seismic waves caused by meteorite impacts and Martian quakes. They used the seismic data to analyse a mysterious boundary 15 miles (24km) below the surface of Mars. Their findings, published in Nature Astronomy, showed that the most likely cause for this boundary was molten rock pooling deep underground and stretching sideways for hundreds or even thousands of miles. Continue reading...

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