activity
20182021
most citedExploring the near-surface at the lunar South Pole with geophysical tools

2 citations · 2 across the 1 of their papers we have counts for

collaborators

5 papers

astro-ph.EP2021

The Lunar Geophysical Network Landing Sites Science Rationale

Heidi Fuqua Haviland, Renee C. Weber, Clive R. Neal +16

The Lunar Geophysical Network (LGN) mission is proposed to land on the Moon in 2030 and deploy packages at four locations to enable geophysical measurements for 6-10 years. Returni…

astro-ph.IM20202 cited

Exploring the near-surface at the lunar South Pole with geophysical tools

C. Schmelzbach, S. Stähler, N. C. Schmerr +8

Geophysical imaging of the lunar near-surface structure will be key for in situ resource utilization, identification of hazards for crews and infrastructure, and answering science…

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…

astro-ph.EP2018

Highly Volcanic Exoplanets, Lava Worlds, and Magma Ocean Worlds: An Emerging Class of Dynamic Exoplanets of Significant Scientific Priority

Wade G. Henning, Joseph P. Renaud, Prabal Saxena +39

Highly volcanic exoplanets, which can be variously characterized as 'lava worlds', 'magma ocean worlds', or 'super-Ios' are high priority targets for investigation. The term 'lava…

astro-ph.EP2018

Exoplanet Science Priorities from the Perspective of Internal and Surface Processes for Silicate and Ice Dominated Worlds

Wade G. Henning, Joseph P. Renaud, Avi M. Mandell +35

The geophysics of extrasolar planets is a scientific topic often regarded as standing largely beyond the reach of near-term observations. This reality in no way diminishes the cent…