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Visualizing electromagnetic fields in laser-produced counter-streaming plasma experiments for collisionless shock laboratory astrophysics

Authors :
Gianluca Gregori
James Ross
Francesco Miniati
Alessandra Ravasio
Channing Huntington
C. Plechaty
Gennady Fiksel
M. Koenig
Po-Yu Chang
Yasuhiro Kuramitsu
Bruce Remington
A. Pelka
Dustin Froula
Carolyn Kuranz
H.-S. Park
Radu Presura
Hideaki Takabe
Siegfried Glenzer
Edison Liang
Brian Reville
Taichi Morita
Youichi Sakawa
Jena Meinecke
Nathan Kugland
Michael Grosskopf
Anatoly Spitkovsky
M. C. Levy
David Martinez
R. P. Drake
Dmitri Ryutov
Source :
Physics of Plasmas
Publication Year :
2013
Publisher :
AIP Publishing, 2013.

Abstract

Collisionless shocks are often observed in fast-moving astrophysical plasmas, formed by non-classical viscosity that is believed to originate from collective electromagnetic fields driven by kinetic plasma instabilities. However, the development of small-scale plasma processes into large-scale structures, such as a collisionless shock, is not well understood. It is also unknown to what extent collisionless shocks contain macroscopic fields with a long coherence length. For these reasons, it is valuable to explore collisionless shock formation, including the growth and self-organization of fields, in laboratory plasmas. The experimental results presented here show at a glance with proton imaging how macroscopic fields can emerge from a system of supersonic counter-streaming plasmas produced at the OMEGA EP laser. Interpretation of these results, plans for additional measurements, and the difficulty of achieving truly collisionless conditions are discussed. Future experiments at the National Ignition Facility are expected to create fully formed collisionless shocks in plasmas with no pre-imposed magnetic field. © 2013 AIP Publishing LLC.

Details

ISSN :
10897674 and 1070664X
Volume :
20
Database :
OpenAIRE
Journal :
Physics of Plasmas
Accession number :
edsair.doi.dedup.....80f9fbfc77e17e7fedbed29e4b51ad16