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Ultraviolet imaging of a magneto-plasmadynamic thruster

Academic Article
Publication Date:
2004
abstract:
In this paper the results of a project concerning the ultraviolet (UV) imaging of a plasma for space applications, produced in a magneto-plasmadynamic (MPD) thruster, are presented. MPD are a class of high-power electric space propulsion devices that accelerate a plasma to high velocities (>10 km/s), by exploiting the Lorentz force. This force arises from the interaction between the discharge electrical current and a self induced and externally applied magnetic field. The imaging system has been realized by inserting three arrays of UV-enhanced photodiodes directly into the plastic structure of the anode. The amplifiers are miniaturized and built into the detector. This advanced diagnostic design allows for a detailed tomographic reconstruction of the emissivity spatial structure, both in the axial direction z (corresponding to a wave number n) and azimuthal direction (wave number m) with high time resolution. A magneto-hydrodynamic instability, with mode numbers m=1 and n=1 has been observed, which might affect the performances of the thruster.
Iris type:
01.01 Articolo in rivista
Keywords:
Low noise amplifiers; Magneto-plasmadynamic (MPD) thruster; Plasma plumes; Rotation frequency
List of contributors:
Marrelli, Lionello; Spizzo, Gianluca
Authors of the University:
MARRELLI LIONELLO
SPIZZO GIANLUCA
Handle:
https://iris.cnr.it/handle/20.500.14243/42383
Published in:
REVIEW OF SCIENTIFIC INSTRUMENTS
Journal
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URL

http://rsi.aip.org/resource/1/rsinak/v75/i10/p4149_s1?isAuthorized=no
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