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      A novel trajectory concept for a mission to the Inner Large Moons of Saturn

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          Abstract

          We present a novel concept for a small mission to the four inner large satellites of Saturn. Leveraging the high efficiency of electric propulsion, the concept enables orbit insertion around each of the moons, for arbitrarily long close observation periods. The mission starts with a EVVES interplanetary segment, where a combination of multiple gravity assist and deep space low thrust enables reduced relative arrival velocity at Saturn. As a result, an unpowered capture via a sequence of resonant flybys with Titan is possible. The transfers between moons use a low-thrust control law that connects unstable and stable branches of the invariant manifolds of planar Lyapunov orbits from the circular restricted three-body problem of each moon and Saturn. The exploration of the moons relies on homoclinic and heteroclinic connections of the Lyapunov orbits around the L\(_1\) and L\(_2\) equilibrium points. These science orbits can be extended for arbitrary lengths of time with negligible propellant usage. The strategy enables a comprehensive scientific exploration of the inner large moons, located deep inside the gravitational well of Saturn, which is unfeasible with conventional impulsive maneuvers due to excessive fuel consumption.

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          Author and article information

          Journal
          27 May 2023
          Article
          2305.17548
          50520fbd-8ecd-41ef-a6dd-84a14ba4c758

          http://creativecommons.org/licenses/by/4.0/

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          Custom metadata
          astro-ph.EP astro-ph.IM

          Planetary astrophysics,Instrumentation & Methods for astrophysics
          Planetary astrophysics, Instrumentation & Methods for astrophysics

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