Based on an updated model of the regolith’s elastic properties, we simulate the ambient vibrations background wavefield recorded by InSight’s Seismic Experiment for Interior Structure (SEIS) on Mars to characterise the influence of the regolith and invert SEIS data for shallow subsurface structure. By approximately scaling the synthetics based on seismic signals of a terrestrial dust devil, we find that the high-frequency atmospheric background wavefield should be above the self-noise of SEIS’s SP sensors, even if the signals are not produced within 100–200 m of the station. We compare horizontal-to-vertical spectral ratios and Rayleigh wave ellipticity curves for a surface-wave based simulation on the one hand with synthetics explicitly co...
International audienceAcoustic waves in planetary atmospheres couple into the solid surface, produci...
After more than 4 Earth years of operation on the martian surface monitoring the planet’s ground vib...
International audienceInSight’s Seismic Experiment for Interior Structure (SEIS) provides a unique a...
Based on an updated model of the regolith’s elastic properties, we simulate the ambient vibrations b...
The InSight mission landed on Mars on November 26th, 2018 and its seismometer, the Seismic Experimen...
We invert Rayleigh wave ellipticity curves extracted from ambient seismic vibrations at the InSight ...
The Seismic Experiment for Interior Structure (SEIS) of the InSight mission to Mars has been providi...
International audienceFor the first time, we measured the ellipticity of direct Rayleigh waves at in...
International audienceSummary The H/V spectral ratio inversion is a traditional technique for derivi...
The Seismic Experiment for Interior Structure (SEIS) of the InSight mission to Mars, has been provid...
The National Aeronautics and Space Administration’s (NASAs) Interior exploration using Seismic Inves...
International audienceABSTRACT The National Aeronautics and Space Administration’s (NASAs) Interior ...
NASA's InSight lander successfully touched down on Mars in November 2018, and, for the first time, a...
The knowledge of the local soil structure is important for the assessment of seismic hazards. A wide...
International audienceAcoustic waves in planetary atmospheres couple into the solid surface, produci...
After more than 4 Earth years of operation on the martian surface monitoring the planet’s ground vib...
International audienceInSight’s Seismic Experiment for Interior Structure (SEIS) provides a unique a...
Based on an updated model of the regolith’s elastic properties, we simulate the ambient vibrations b...
The InSight mission landed on Mars on November 26th, 2018 and its seismometer, the Seismic Experimen...
We invert Rayleigh wave ellipticity curves extracted from ambient seismic vibrations at the InSight ...
The Seismic Experiment for Interior Structure (SEIS) of the InSight mission to Mars has been providi...
International audienceFor the first time, we measured the ellipticity of direct Rayleigh waves at in...
International audienceSummary The H/V spectral ratio inversion is a traditional technique for derivi...
The Seismic Experiment for Interior Structure (SEIS) of the InSight mission to Mars, has been provid...
The National Aeronautics and Space Administration’s (NASAs) Interior exploration using Seismic Inves...
International audienceABSTRACT The National Aeronautics and Space Administration’s (NASAs) Interior ...
NASA's InSight lander successfully touched down on Mars in November 2018, and, for the first time, a...
The knowledge of the local soil structure is important for the assessment of seismic hazards. A wide...
International audienceAcoustic waves in planetary atmospheres couple into the solid surface, produci...
After more than 4 Earth years of operation on the martian surface monitoring the planet’s ground vib...
International audienceInSight’s Seismic Experiment for Interior Structure (SEIS) provides a unique a...