This article deals with the investigation of the Martian subsurface in the Utopia Planitia region using Zhurong’s ground-penetrating radar. The low-frequency data recorded along the overall path followed by the rover are processed thanks to a customized signal processing pipeline aiming on one side to minimize the artifacts in the radargrams and, on the other one, to obtain images of the subsoil that aid the following analysis and interpretation stage. The images reveal a three-layer structure beneath the landing area up to the depth of ~40 m. The general scattering characteristics indicate the presence of 5 ∼ 8 -m regolith, 2 ∼ 3 -m fine materials, and 15 ∼ 30 m embedded with blocks generating a significant electromagnetic scattering. The existence of an upward decrease in grain size is resulted from long-term weathering and repeated impacts or the occurrence of flood events. The radargrams depict a distinctive local enhancement of the scattering at the end of the rover route from Sol 292 to Sol 325. Analysis of the layout of barchan dunes and the distribution of craters suggests that the resurfacing activity is the result of a complex combination of tectonic activities and impact events.

Investigating Martian Subsurface Features in Utopia Planitia With Tianwen-1 Ground-Penetrating Radar

Soldovieri F.;Gennarelli G.;
2024

Abstract

This article deals with the investigation of the Martian subsurface in the Utopia Planitia region using Zhurong’s ground-penetrating radar. The low-frequency data recorded along the overall path followed by the rover are processed thanks to a customized signal processing pipeline aiming on one side to minimize the artifacts in the radargrams and, on the other one, to obtain images of the subsoil that aid the following analysis and interpretation stage. The images reveal a three-layer structure beneath the landing area up to the depth of ~40 m. The general scattering characteristics indicate the presence of 5 ∼ 8 -m regolith, 2 ∼ 3 -m fine materials, and 15 ∼ 30 m embedded with blocks generating a significant electromagnetic scattering. The existence of an upward decrease in grain size is resulted from long-term weathering and repeated impacts or the occurrence of flood events. The radargrams depict a distinctive local enhancement of the scattering at the end of the rover route from Sol 292 to Sol 325. Analysis of the layout of barchan dunes and the distribution of craters suggests that the resurfacing activity is the result of a complex combination of tectonic activities and impact events.
2024
Istituto per il Rilevamento Elettromagnetico dell'Ambiente - IREA
Ground Penetrating Radar, Martian Subsurface, Utopia Planitia, Signal Processing, Grain Size, Land Area, Final Material, Decrease In Grain Size, Dielectric Constant, Tomography Imaging, Image Reconstruction, Inverse Problem, Integral Equation, Loss Tangent, Dielectric Permittivity, Geological Features, Low Reflectance, Incident Field, Adjoint Operator, Landing Site, Rx Antenna, Subsurface Structure, Fluvial Processes, Relative Dielectric Permittivity, Background Removal, Topographic Correction, Hyperbola, Tx Antenna, Binding Sequence
Microwave Tomography
Ground Penetrating Radar
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/509723
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