Chicxulub impact site stayed hot for 8 million years

The Chicxulub asteroid impact that ended the dinosaur era left the site in what is now Mexico hot enough to sustain underground microbial life for at least 8 million years. New analysis of rock cores shows the hydrothermal system lasted far longer than earlier estimates suggested.

The 15-kilometre-wide asteroid struck 66 million years ago and melted about 10,000 cubic kilometres of rock. Seawater combined with the molten material to form a porous hydrothermal system that extended several kilometres underground. Researchers led by Annemarie Pickersgill at the University of Glasgow drilled one kilometre into the crater and dated minerals using argon isotopes. The ages ranged from the time of impact to about 58 million years ago, indicating hydrothermal activity continued for 8 million years. Sulphur isotopes in the cores also point to microbial life that recovered quickly within the system. Chris Kirkland of Curtin University said the findings show large impacts can create long-lived underground habitats rather than simply destroying environments. The results suggest early Earth impact craters may have offered extended refuges for life, and similar systems could have existed on other planets.

Liittyvät artikkelit

New computer models indicate that ancient asteroid strikes created vast underground hydrothermal systems on early Earth. These environments could have supported the chemical processes needed for life to begin. Researchers from the Southwest Research Institute led the study.

Raportoinut AI

Scientists have determined that a rare CO chondrite meteorite struck Earth 66 million years ago, causing the mass extinction that eliminated the non-avian dinosaurs.

Scientists have detected traces of iron-60 in Antarctic ice up to 80,000 years old, showing that the solar system is moving through material from an ancient stellar explosion. The findings come from a study published in Physical Review Letters and point to the Local Interstellar Cloud as the source of the radioactive isotope.

Raportoinut AI

A variety of large fruits and seeds preserved in volcanic ash nearly 75 million years ago indicate that flowering plants were diverse and abundant during the dinosaur era.

Tämä verkkosivusto käyttää evästeitä

Käytämme evästeitä analyysiä varten parantaaksemme sivustoamme. Lue tietosuojakäytäntömme tietosuojakäytäntö lisätietoja varten.
Hylkää