Small impact cratering processes produce distinctive charcoal assemblages

Files

Loading...
Thumbnail Image
Primary
Name

Losiak et al 2022.pdf

Description
paper
Size

1.89 MB

Format

Adobe PDF

Checksum

(MD5):3632bb6bad42f1733a53e9fade4e4cbd

Loading...
Thumbnail Image
Name

G50056_SuppMat.pdf

Description
supplementary material
Size

791.96 KB

Format

Adobe PDF

Checksum

(MD5):295f285f4d1cc9cbdc3d632e3da6c2c9

Abstract

The frequency of crater-producing asteroid impacts on Earth is not known. Of the predicted Holocene asteroid impact craters of <200 m diameter, only ~30% have been located. Until now there has been no way to distinguish them from “normal” terrestrial structures unless pieces of iron meteorites were found nearby. We show that the reflective properties of charcoal found in the proximal ejecta of small impact craters are distinct from those produced by wildfires. Impact-produced charcoals and wildfire charcoals must derive from different heating regimes. We suggest that charcoal with specific reflective properties may help to recognize the meteoritic origin of small craters.

Description

Citation

Geology vol. 50 (11), 2022, pp. 1276-1280.

Endorsement

Review

Supplemented By

Referenced By

Rights and licensing

info:eu-repo/semantics/openAccess