Fission Systems for Mars Exploration
Michael G. Houts, T. Kim, Daniel J. Dorney, Marion Shayne Swint
Abstract
Michael G. Houts, T. Kim, Daniel J. Dorney, Marion Shayne Swint
Abstract
Fission systems are used extensively on earth, and 34 such systems have flown in space. The energy density of fission is over 10 million times that of chemical reactions, giving fission the potential to eliminate energy density constraints for many space missions. Potential safety and operational concerns with fission systems are well understood, and strategies exist for affordably developing such systems. By enabling a power-rich environment and highly efficient propulsion, fission systems could enable affordable, sustainable exploration of Mars.
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Fission systems are used extensively on earth, and 34 such systems have flown in space. The energy density of fission is over 10 million times that of chemical reactions, giving fission the potential to eliminate energy density constraints for many space missions. Potential safety and operational concerns with fission systems are well understood, and strategies exist for affordably developing such systems. By enabling a power-rich environment and highly efficient propulsion, fission systems could enable affordable, sustainable exploration of Mars.
Key concepts: Mars Exploration Program, Fission, Exploration of Mars, Propulsion, Fission products, Nuclear fission, Environmental science, Astrobiology