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Masked tectonic structures suggest Mercury contracted 40% more than its visible scars alone indicate

Masked tectonic structures suggest Mercury contracted 40% more than its visible scars alone indicate

phys.org 13.09.2026 21:30 7 views
The surface of Mercury is filled with craters, ridges and steep cliffs. Over billions of years, as the planet's interior cooled, the planet also shrank. Just as the skin of a drying fruit wrinkles when what is inside it

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: The surface of Mercury is filled with craters, ridges and steep cliffs. Over billions of years, as the planet's interior cooled, the planet also shrank.

Just as the skin of a drying fruit wrinkles when what is inside it shrinks, Mercury's rocky surface crumpled into ridges and cliffs as its interior cooled and the planet contracted. Mercury has quite literally grown smaller with age. These geological and topographic features found on the planet's surface have also preserved a record of how Mercury has evolved.

Scientists have long used them to study the planet's geological history. New research led by Hokkaido University, in collaboration with the German Aerospace Center (DLR) and The University of Tokyo, suggests that Mercury has contracted by about 10% to 30% more than previous estimates suggested. The team found that the planet's rough surface may have obscured some of the tectonic structures used by scientists to calculate its shrinkage.

The findings were published in Geophysical Research Letters. Among the geological features found on Mercury are what scientists call shortening structures: the ridges and scarps created when the planet's crust was squeezed as its interior cooled and contracted. By mapping these structures, scientists can estimate how much Mercury's radius has decreased.

However, the researchers found that shortening structures are much more commonly identified in smoother terrain than in rougher regions, suggesting that some of the planet's tectonic record might have been obscured. "Mercury's surface preserves a record of how the planet has cooled and contracted, but we found that this record is incomplete," said Gaku Nishiyama, lead author of the study. "We compared a global map of Mercury's surface roughness with maps of shortening structures and contraction.

Once we account for the effect of rough terrain, Mercury appears to have shrunk considerably more than what the visible tectonic record alone suggested." A particularly clear pattern emerged when the researchers looked at relatively young impact craters. When a large impact occurs, surface material can be thrown across the surrounding area, forming rough deposits called ejecta. These deposits can cover older tectonic structures and make them harder to see.

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