Rocketquake Seismology with a Falcon 9 Rocket Source

Fuente: arXiv
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Main Authors: Schuster, Gerard. T., Li, Jing, Hanafy, Sherif, Thompson, Vaughn, Farrell, Jamie Mark, Trentman, Daniel
Format: Preprint
Published: 2025
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author Schuster, Gerard. T.
Li, Jing
Hanafy, Sherif
Thompson, Vaughn
Farrell, Jamie Mark
Trentman, Daniel
author_facet Schuster, Gerard. T.
Li, Jing
Hanafy, Sherif
Thompson, Vaughn
Farrell, Jamie Mark
Trentman, Daniel
contents We investigate the feasibility of using rocket launches, specifically rocketquakes, as a seismic source to image subsurface velocity and geology of planetary bodies. Toward this goal, we record the seismic vibrations excited by a Falcon 9 rocket launch from Vandenberg Space Force Base (SFB) near Lompoc, California. Nine passive three-component (3C) seismometers were deployed every 18.75 meters along a 45-degree line from the launch site starting at the offset of about 7 km kilometers from the launch pad. Results show that coherent body waves can be recorded with a P-velocity of more than 2.0 km/s and a penetration depth of 1 km or deeper. Stronger Rayleigh waves were also recorded and inverted to give an S-velocity profile to a depth of 60 m. Notably, a 3C recorder placed approximately 15 km from the launch site did not capture any discernible body wave arrivals. The imaging techniques employed for rocketquake seismology integrate inversion methods from earthquake and exploration seismology, yielding the P- and S-velocity profiles of the subsurface. These results suggest that rocket launches as seismic sources will provide unprecedented opportunities for identifying the subsurface hazards, faults, tunnels, water ice, and mineral deposits of planetary bodies and their moons.
format Preprint
id arxiv_https___arxiv_org_abs_2502_01982
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Rocketquake Seismology with a Falcon 9 Rocket Source
Schuster, Gerard. T.
Li, Jing
Hanafy, Sherif
Thompson, Vaughn
Farrell, Jamie Mark
Trentman, Daniel
Geophysics
We investigate the feasibility of using rocket launches, specifically rocketquakes, as a seismic source to image subsurface velocity and geology of planetary bodies. Toward this goal, we record the seismic vibrations excited by a Falcon 9 rocket launch from Vandenberg Space Force Base (SFB) near Lompoc, California. Nine passive three-component (3C) seismometers were deployed every 18.75 meters along a 45-degree line from the launch site starting at the offset of about 7 km kilometers from the launch pad. Results show that coherent body waves can be recorded with a P-velocity of more than 2.0 km/s and a penetration depth of 1 km or deeper. Stronger Rayleigh waves were also recorded and inverted to give an S-velocity profile to a depth of 60 m. Notably, a 3C recorder placed approximately 15 km from the launch site did not capture any discernible body wave arrivals. The imaging techniques employed for rocketquake seismology integrate inversion methods from earthquake and exploration seismology, yielding the P- and S-velocity profiles of the subsurface. These results suggest that rocket launches as seismic sources will provide unprecedented opportunities for identifying the subsurface hazards, faults, tunnels, water ice, and mineral deposits of planetary bodies and their moons.
title Rocketquake Seismology with a Falcon 9 Rocket Source
topic Geophysics
url https://arxiv.org/abs/2502.01982