30/07/2026 16:16 - Tecnologia
According to reports from NASA and media outlets such as Infobae and Yahoo Noticias, the Curiosity rover may have uncovered one of the most exciting clues about Mars' past.
The exploration vehicle discovered an extensive field of polygonal fractures with a texture incredibly similar to a honeycomb. This finding was made while the rover was ascending a valley nicknamed 'Valle Grande'. What intrigues scientists most is that, although the mission had previously detected similar geometries, never before had such a large-scale set been seen in a single spot on the terrain.
“We have seen many fascinating landscapes through the eyes of Curiosity, but this sea of polygons left us breathless,” said Ashwin Vasavada, project scientist at NASA's Jet Propulsion Laboratory (JPL) in Southern California. The team hopes that chemical and shape data will reveal the origin of these structures.
The 360-degree panoramic images were captured on June 19 and 20, 2026, corresponding to Martian sols 4,930 and 4,931 of the mission. The figures, measuring between 4 and 8 centimeters in diameter, extend in all directions as far as the rover's view. Additionally, these structures cover the flanks of a nearby hill called Miraflores, which is 6 meters tall and topped by a thick layer of sand.
The exact origin of this polygonal field remains a mystery to researchers, who are considering several hopeful hypotheses about the geological processes that may have shaped the surface:
As researcher William Rapin of the Institute for Research in Astrophysics and Planetology in France noted in 2023, wet-dry cycles are useful, perhaps even necessary, for the molecular evolution that could give rise to life.
This discovery adds to a long list of surprises that Curiosity has revealed since its landing on Mars on August 5, 2012. Since 2014, the rover has been ascending Mount Sharp, a mountain nearly 5 kilometers high that, billions of years ago, was covered by lakes and streams.
During its journey, Curiosity has found sulfur crystals, shiny meteorites, and most excitingly, carbon-based molecules considered precursors to RNA and DNA. Although NASA cannot yet confirm whether these molecules arose from biological or purely geological processes, the finding reinforces the idea that ancient Mars had the chemical conditions necessary to have hosted microbial life.
With each new 'honeycomb' and each analyzed rock, we move a little closer to unraveling the secrets of our planetary neighbor and answering one of humanity's biggest questions: Are we alone in the universe?
Alfredo S. Quiroga