• Near Surface Properties of Martian Regolith Derived From InSight HP3‐RAD Temperature Observations During Phobos Transits 

      Mueller, N.ORCIDiD; Piqueux, S.ORCIDiD; Lemmon, M.ORCIDiD; Maki, J.ORCIDiD; Lorenz, R. D.ORCIDiD; Grott, M.ORCIDiD; Spohn, T.ORCIDiD; Smrekar, S. E.ORCIDiD; Knollenberg, J.; Hudson, T. L.ORCIDiD; Krause, C.; Millour, E.ORCIDiD; Forget, F.; Golombek, M.ORCIDiD; Hagermann, A.; Attree, N.ORCIDiD; Siegler, M.ORCIDiD; Banerdt, W. B.ORCIDiD (Geophysical Research Letters, 2021-08-09)
      We use the Martian surface temperature response to Phobos transits observed next to the InSight lander in Elysium Planitia to constrain the thermal properties of the uppermost layer of regolith. Modeled transit lightcurves ...
    • Thermal Conductivity of the Martian Soil at the InSight Landing Site From HP3 Active Heating Experiments 

      Grott, M.ORCIDiD; Spohn, T.ORCIDiD; Knollenberg, J.; Krause, C.; Hudson, T. L.ORCIDiD; Piqueux, S.ORCIDiD; Müller, N.; Golombek, M.ORCIDiD; Vrettos, C.; Marteau, E.ORCIDiD; Nagihara, S.ORCIDiD; Morgan, P.ORCIDiD; Murphy, J. P.; Siegler, M.ORCIDiD; King, S. D.ORCIDiD; Smrekar, S. E.ORCIDiD; Banerdt, W. B.ORCIDiD (Journal of Geophysical Research: Planets, 2021-07-14)
      The heat flow and physical properties package (HP3) of the InSight Mars mission is an instrument package designed to determine the martian planetary heat flow. To this end, the package was designed to emplace sensors into ...