Daniel J. Scheeres
Papers
5
Total Citations
129
H-Index
5
About
Daniel J. Scheeres is a pioneering figure in astrodynamics, whose research fundamentally shapes how we explore and interact with small solar system bodies like asteroids and comets. His core contributions lie in understanding the extreme dynamical environments near these objects—where weak gravity, irregular shapes, and rapid rotation create chaotic orbital and surface conditions. Scheeres has developed the theoretical and practical frameworks for close-proximity operations, including spacecraft orbital dynamics and control around asteroids (as detailed in his 2014 work, cited 19 times), and the design of surface exploration robots that can navigate these treacherous terrains (2008, 18 citations). His impact is evident in both foundational science and high-profile missions: he was a key contributor to the physical modeling of the triple asteroid (136617) 1994 CC (2011, 68 citations) and played a central role in NASA’s Asteroid Redirect Mission (ARM) Formulation Assessment and Support Team (2016, 17 citations), helping to define the architecture for human and robotic exploration of near-Earth asteroids. Through his work, Scheeres has become an indispensable authority for any mission aiming to touch or orbit these enigmatic worlds.
Research Focus
Key Achievements
Top Papers
- 1
- 2Close proximity dynamics and control about asteroids19 citations · 2014
- 3Dynamics and Control of Surface Exploration Robots on Asteroids18 citations · 2008
- 4Asteroid Redirect Mission (ARM) Formulation Assessment and Support Team (FAST) Final Report17 citations · 2016
- 5