Anode current density distribution in a cusped field thruster
Huan Wu, Hui Liu, Yingchao Meng, Jun-You Zhang, Siyu Yang, Peng Hu, Pengbo Chen, Daren Yu
Abstract
Huan Wu, Hui Liu, Yingchao Meng, Jun-You Zhang, Siyu Yang, Peng Hu, Pengbo Chen, Daren Yu
Abstract
The cusped field thruster is a new electric propulsion device that is expected to have a non-uniform radial current density at the anode. To further study the anode current density distribution, a multi-annulus anode is designed to directly measure the anode current density for the first time. The anode current density decreases sharply at larger radii; the magnitude of collected current density at the center is far higher compared with the outer annuli. The anode current density non-uniformity does not demonstrate a significant change with varying working conditions.
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The cusped field thruster is a new electric propulsion device that is expected to have a non-uniform radial current density at the anode. To further study the anode current density distribution, a multi-annulus anode is designed to directly measure the anode current density for the first time. The anode current density decreases sharply at larger radii; the magnitude of collected current density at the center is far higher compared with the outer annuli. The anode current density non-uniformity does not demonstrate a significant change with varying working conditions.
Key concepts: Anode, Current density, Physics, Annulus (botany), Current (fluid), Electric field, Mechanics, Atomic physics