DocumentCode
2885962
Title
Hydrodynamic and magnetically driven jets on the MAGPIE generator
Author
Suzuki-Vidal, F. ; Lebedev, S.V. ; Swadling, G. ; Bocchi, M. ; de Grouchy, P. ; Burdiak, G. ; Bland, S.N. ; Hall, G.N. ; Harvey-Thompson, A.J. ; Khoory, E. ; Pickworth, L. ; Skidmore, J. ; Chittenden, J.P. ; Krishnan, M. ; Wilson-Elliott, K. ; Madden, R.
Author_Institution
Blackett Lab., Imperial Coll. London, London, UK
fYear
2011
fDate
26-30 June 2011
Firstpage
1
Lastpage
1
Abstract
Summary form only given. The formation of highly supersonic, radiatively cooled plasma jets with applications to laboratory astrophysics has been an active area of research on the MAGPIE generator. Two experimental arrangements, radial wire arrays1 and radial foils2, can produce plasma flows with similar dimensionless numbers to those encountered in protostellar jets. In radial wire arrays, a magnetically driven jet on the axis of a cavity evolves into a “clumpy” outflow due to the formation of current-driven instabilities, which could be relevant to the spatial and temporal variability of features observed in protostellar jets. In radial foils, a hydrodynamic jet interacts with an argon ambient injected above the foil using a supersonic gas nozzle. The results are characterized by the formation of several shock features, opening the possibility of studying jet-ambient interactions in the laboratory. Experimental results from different diagnostics including laser probing and self-emission of protons will be presented. Theses results will be compared with first 3-D MHD simulations using the Gorgon code.
Keywords
nozzles; plasma diagnostics; plasma instability; plasma jets; plasma magnetohydrodynamics; plasma shock waves; 3-D MHD simulation; Gorgon code; MAGPIE generator; current-driven instabilities; dimensionless number; hydrodynamic driven jets; jet-ambient interaction process; laser probing method; magnetically driven jets; plasma flow; proton self-emission process; protostellar jets; radiatively cooled plasma jets; spatial variability; supersonic gas nozzle; temporal variability; Generators; Magnetohydrodynamics;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science (ICOPS), 2011 Abstracts IEEE International Conference on
Conference_Location
Chicago, IL
ISSN
0730-9244
Print_ISBN
978-1-61284-330-8
Electronic_ISBN
0730-9244
Type
conf
DOI
10.1109/PLASMA.2011.5993398
Filename
5993398
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