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相对论 regime 中丝状(韦贝尔)不稳定性发展所产生的三维磁性结构。

Three-dimensional magnetic structures generated by the development of the filamentation (Weibel) instability in the relativistic regime.

作者信息

Califano F, Del Sarto D, Pegoraro F

机构信息

Physics Department and CNISM, University of Pisa, Pisa, Italy.

出版信息

Phys Rev Lett. 2006 Mar 17;96(10):105008. doi: 10.1103/PhysRevLett.96.105008. Epub 2006 Mar 16.

Abstract

We present three-dimensional, fully relativistic, fluid simulations of the dynamics of inhomogeneous counter streaming beams with the aim of understanding the magnetic structures that can be expected to form as a consequence of the development of the so-called Weibel instability. Ringlike structures in the transverse direction are generated as a consequence of the development of a spatially resonant mode. We describe the structures generated by beams of equal initial density and velocity and by a fast, less dense beam compensated by a slower, denser beam. We consider these two cases as schematic models of a laser produced beam propagating in a plasma with nearly equal density and in a plasma much denser than the injected beam.

摘要

我们给出了非均匀反向流束动力学的三维、完全相对论流体模拟,目的是理解由于所谓的韦贝尔不稳定性发展而可能形成的磁结构。由于空间共振模式的发展,在横向产生了环状结构。我们描述了由初始密度和速度相等的束流以及由快速、密度较小的束流与较慢、密度较大的束流补偿所产生的结构。我们将这两种情况视为激光产生的束流在密度几乎相等的等离子体中以及在比注入束流密度大得多的等离子体中传播的示意模型。

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