Excitation and detection of magnetoacoustic waves in a rotating plasma accelerator.
Magnetoacoustic wave excitation and detection in rotating plasma accelerator, noting resonance and wave transition
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Magnetoacoustic wave excitation and detection in rotating plasma accelerator, noting resonance and wave transition
This report describes the results of a program to verify an electrostatic plasma acceleration concept and to identify those parameters most important in optimizing an Electrostatic Plasma Accelerator (EPA) thruster based upon this thrust mechanism. Preliminary performance measurements of thrust, specific impulse and efficiency were obtained using a unique plasma exhaust momentum probe. Reliable EPA thruster operation was achieved using one power supply.
Repetitively pulsed, xenon propellant, plasma accelerator, and metal vapor propellant injector development
Magnetoacoustic wave excitation and detection in rotating plasma accelerator, noting resonance and wave transition
Electron cyclotron resonance plasma accelerators for space propulsion systems
Movable RF antenna probe in plasma accelerators continuously maps the RF field both within and beyond the accelerator. It eliminates the need for installing probes in the accelerator walls. The moving RF probe can be used to map the RF electrical field under various accelerator conditions.
Plasma acceleration by microwaves near electron cyclotron resonance without collisions, comparing theory and experiment
Current sheet velocity in coaxial plasma accelerator, noting drag due to insulator ablation and degassing
Plasma acceleration away from rotating magnetized astrophysical objects analyzed and applied to pulsar NP 0532 for magnetic moment and mass loss rate calculations
Ion-neutral coupling in plasma acceleration revealed by velocity disparities determined spectroscopically
Current sheet velocity in coaxial plasma accelerator, noting drag due to insulator ablation and degassing
Ion-neutral coupling in plasma acceleration revealed by velocity disparities determined spectroscopically
Two-dimensional unsteady flow in traveling wave plasma accelerator studied using small perturbation theory
Neutral mass density measurements in repetitively pulsed coaxial plasma accelerator
A single-stage pulsed inductive plasma accelerator is modeled as an inductive mass-driver. The plasma is treated as a rigid slug, which acts as the armature. The system is a transformer, with the drive coil serving as the primary and the slug as the secondary. We derive a set of coupled dynamic-circuit equations, which depend on five dimensionless coefficients, and on the functional form of the mutual inductance profile, M (z). For a given coil geometry, M (z) was determined experimentally and compared to the results of calculations carried out with QuickField. The equations are solved with various coefficient values, in order to determine the conditions that yield high efficiencies. It was found that the coupling efficiency can be quite high and likely scales with power, although this does not preclude operation at lower power with acceptable efficiency. The effect of an imbedded magnetic bias flux, as for the case of a plasmoid thruster, was also included in the calculations.
Tangential drag measurements at electrodes of arc in plasma accelerator, ion current partitioning at cathode and electrode damage
One-inch-square linear d-c plasma accelerator using cesium seeded nitrogen
Performance and operation of one-inch-square plasma accelerator to simulate reentry velocities