Measurement of Kinetic-Scale Current Filamentation Dynamics and Associated Magnetic Fields in Interpenetrating Plasmas.

PHYSICAL REVIEW LETTERS(2020)

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摘要
We present the first local, quantitative measurements of ion current filamentation and magnetic field amplification in interpenetrating plasmas, characterizing the dynamics of the ion Weibel instability. The interaction of a pair of laser-generated, counterpropagating, collisionless, supersonic plasma flows is probed using optical Thomson scattering (TS). Analysis of the TS ion-feature revealed anticorrelated modulations in the density of the two ion streams at the spatial scale of the ion skin depth c/omega(pi) = 120 mu m, and a correlated modulation in the plasma current. The inferred current profile implies a magnetic field amplitude similar to 30 +/- 6 T, corresponding to similar to 1% of the flow kinetic energy, indicating that magnetic trapping is the dominant saturation mechanism.
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