Ancient ocean coastal deposits imaged on Mars

J Jianhui Li (School of Civil Engineering and Transportation, Guangzhou University) H Hai Liu (Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, National Engineering Laboratory for Clean Technology of Leather Manufacture) X Xu Meng (School of Civil Engineering and Transportation, Guangzhou University) D Diwen Duan (School of Civil Engineering and Transportation, Guangzhou University) H Haijing Lu (School of Civil Engineering and Transportation, Guangzhou University) J Jinhai Zhang (Institute of Geology and Geophysics, Chinese Academy of Sciences) F Fengshou Zhang (Department of Geotechnical Engineering, Tongji University) D Derek Elsworth (Department of Energy and Mineral Engineering, Pennsylvania State University) B Benjamin T. Cardenas (Department of Geosciences, The Pennsylvania State University) M Michael Manga (Department of Earth and Planetary Science) B Bin Zhou G Guangyou Fang (Aerospace Information Research Institute, Chinese Academy of Sciences)

Abstract

The northern lowlands of early Mars could have contained a significant quantity of liquid water. However, the ocean hypothesis remains controversial due to the lack of conclusive evidence from the Martian subsurface. We use data from the Zhurong Rover Penetrating Radar on the southern Utopia Planitia to identify subsurface dipping reflectors indicative of an ancient prograding shoreline. The reflectors dip unidirectionally with inclinations in the range 6° to 20° and are imaged to a thickness of 10 to 35 m along an uninterrupted 1.3 km northward shoreline-perpendicular traverse. The consistent dip inclinations, absence of dissection by fluvial channels along the extended traverse, and low permittivity of the sediments are consistent with terrestrial coastal deposits—and discount fluvial, aeolian, or magmatic origins favored elsewhere on Mars. The structure, thickness, and length of the section support voluminous supply of onshore sediments into a large body of water, rather than a merely localized and short-lived melt event. Our findings not only provide support for the existence of an ancient Martian ocean in the northern plains but also offer crucial insights into the evolution of the ancient Martian environment.

Article Details

Volume / Issue Vol. 122, Issue 9
Published March 04, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (12)

J

Jianhui Li

School of Civil Engineering and Transportation, Guangzhou University

H

Hai Liu

Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, National Engineering Laboratory for Clean Technology of Leather Manufacture

X

Xu Meng

School of Civil Engineering and Transportation, Guangzhou University

D

Diwen Duan

School of Civil Engineering and Transportation, Guangzhou University

H

Haijing Lu

School of Civil Engineering and Transportation, Guangzhou University

J

Jinhai Zhang

Institute of Geology and Geophysics, Chinese Academy of Sciences

F

Fengshou Zhang

Department of Geotechnical Engineering, Tongji University

D

Derek Elsworth

Department of Energy and Mineral Engineering, Pennsylvania State University

B

Benjamin T. Cardenas

Department of Geosciences, The Pennsylvania State University

M

Michael Manga

Department of Earth and Planetary Science

B

Bin Zhou

G

Guangyou Fang

Aerospace Information Research Institute, Chinese Academy of Sciences