activity
20172020
collaborators

5 papers

physics.geo-ph2020

On-deck seismology: Lessons from InSight for future planetary seismology

Mark P. Panning, W. Tom Pike, Philippe Lognonné +12

Before deploying to the surface of Mars, the short-period (SP) seismometer of the InSight mission operated on deck for a total of 48 hours. This dataset can be used to understand h…

astro-ph.EP2019

Seismic Signals from Waves on Titan's Seas

Simon C. Stähler, Mark P. Panning, Céline Hadziioannou +4

Seismology is the main tool for inferring the deep interior structures of Earth and potentially also of other planetary bodies in the solar system. Terrestrial seismology is influe…

astro-ph.EP2018

Seismicity on Tidally Active Solid-Surface Worlds

T. A. Hurford, W. G. Henning, R. Maguire +8

Tidal interactions between planets or stars and the bodies that orbit them dissipate energy in their interiors. The energy dissipated drives internal heating and a fraction of that…

physics.geo-ph2018

Seismic response of the Mars Curiosity Rover: Implications for future planetary seismology

Mark P. Panning, Sharon Kedar

Seismic measurements are an important tool for exploration of planetary interiors, but may not be included in missions due to perceived complexity in placement of sensitive instrum…

physics.geo-ph2017

Seismic wave propagation in icy ocean worlds

Simon C. Stähler, Mark P. Panning, Steve D. Vance +4

Seismology was developed on Earth and shaped our model of the Earth's interior over the 20th century. With the exception of the Philae lander, all in situ extraterrestrial seismolo…