Publication | Open Access
Development status of a next generation ECRIS: MARS-D at LBNL
15
Citations
6
References
2015
Year
Space MissionMagnetismElectrical EngineeringEngineeringAerospace EngineeringMixed AxialNext Generation EcrisPlanetary ExplorationMartian ExplorationSpace ArchitectureMagnetic FieldPlanetary EnvironmentSpace ResearchComputational ElectromagneticsNbti Mars MagnetMagnetic DeviceRadial Field SystemMagnetic Materials
To demonstrate a Mixed Axial and Radial field System (MARS) as the best magnet scheme for future ECRISs, MARS-D, a demonstrative ECRIS using a NbTi MARS magnet is progressing at Lawrence Berkeley National Laboratory. An optimized MARS design can use either NbTi or Nb3Sn coils with reduced engineering complexities to construct the needed high-field magnets. The optimized magnet design could enhance MARS-D to a next generation ECRIS by producing minimum-B field maxima of 5.6 T axially and 3.2 T radially for operating frequencies up to 45 GHz. In-progress test winding has achieved a milestone demonstrating the fabrication feasibility of a MARS closed-loop coil.
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