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Developed turbulence and nonlinear amplification of magnetic fields inlaboratory and astrophysical plasmas

机译:湍流和磁场的非线性放大实验室和天体等离子体

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摘要

The visible matter in the universe is turbulent and magnetized. Turbulence in galaxy clusters is produced by mergers and by jets of the central galaxies and believed responsible for the amplification of magnetic fields. We report on experiments looking at the collision of two laser-produced plasma clouds, mimicking, in the laboratory, a cluster merger event. By measuring the spectrum of the density fluctuations, we infer developed, Kolmogorov-like turbulence. From spectral line broadening, we estimate a level of turbulence consistent with turbulent heating balancing radiative cooling, as it likely does in galaxy clusters. We show that the magnetic field is amplified by turbulent motions, reaching a nonlinear regime that is a precursor to turbulent dynamo. Thus, our experiment provides a promising platform for understanding the structure of turbulence and the amplification of magnetic fields in the universe.
机译:宇宙中的可见物质是湍流且被磁化。星系团的湍流是由合并和中央星系的射流产生的,据信是造成磁场放大的原因。我们报告的实验着眼于两个激光产生的等离子云的碰撞,在实验室中模拟了集群合并事件。通过测量密度波动的频谱,我们可以推断出像科莫莫罗夫一样的湍流。从光谱线展宽,我们可以估算出与湍流加热平衡辐射冷却相一致的湍流水平,就像在星系团中那样。我们表明,磁场被湍流运动放大,达到了非线性状态,这是湍流发电机的先兆。因此,我们的实验为理解湍流的结构和宇宙中磁场的放大提供了一个有希望的平台。

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