Published December 2012 | Version v1
Journal article

Investigation of radiofrequency plasma sources for space travel

  • 1. Space Plasma, Power and Propulsion Laboratory, Research School of Physics and Engineering, Australian National University, ACT 0200 (Australia)
  • 2. Department of Electrical Engineering and Computer Science, Iwate University, Morioka 020-8551 (Japan)

Description

Optimization of radiofrequency (RF) plasma sources for the development of space thrusters differs from other applications such as plasma processing of materials since power efficiency, propellant usage, particle acceleration or heating become driving parameters. The development of two RF (13.56 MHz) plasma sources, the high-pressure (∼1 Torr) capacitively coupled 'pocket rocket' plasma micro-thruster and the low-pressure (∼1 mTorr) inductively coupled helicon double layer thruster (HDLT), is discussed within the context of mature and emerging electric propulsion devices. The density gradient in low-pressure expanding RF plasmas creates an electric field that accelerates positive ions out of the plasma. Generally, the total potential drop is similar to that of a wall sheath allowing the plasma electrons to neutralize the ion beam. A high-pressure expansion with no applied magnetic field can result in large dissociation rates and/or a collimated beam of ions of small area and a flowing heated neutral beam ('pocket rocket'). A low-pressure expansion dominated by a magnetic field can result in the formation of electric double layers which produce a very directed neutralized beam of ions of large area (HDLT). (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/0741-3335/54/12/124021

Additional details

Publishing Information

Journal Title
Plasma Physics and Controlled Fusion
Journal Volume
54
Journal Issue
12
Journal Page Range
[7 p.]
ISSN
0741-3335
CODEN
PPCFET

Conference

Title
39. European Physical Society conference on plasma physics
Dates
2-6 Jul 2012
Place
Stockholm (Sweden)

INIS