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Scaled laboratory experiments explain the kink behaviour of the Crab Nebula jet

机译:大规模的实验室实验解释了蟹状星云喷射的扭结行为

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摘要

The remarkable discovery by the Chandra X-ray observatory that the Crab nebula's jet periodically changes direction provides a challenge to our understanding of astrophysical jet dynamics. It has been suggested that this phenomenon may be the consequence of magnetic fields and magnetohydrodynamic instabilities, but experimental demonstration in a controlled laboratory environment has remained elusive. Here we report experiments that use high-power lasers to create a plasma jet that can be directly compared with the Crab jet through well-defined physical scaling laws. The jet generates its own embedded toroidal magnetic fields; as it moves, plasma instabilities result in multiple deflections of the propagation direction, mimicking the kink behaviour of the Crab jet. The experiment is modelled with three-dimensional numerical simulations that show exactly how the instability develops and results in changes of direction of the jet.
机译:钱德拉X射线天文台的惊人发现表明,蟹状星云的射流会定期改变方向,这对我们对天体射流动力学的理解提出了挑战。有人提出,这种现象可能是磁场和磁流体动力不稳定性的结果,但在受控实验室环境中进行的实验证明仍然难以捉摸。在这里,我们报告使用高功率激光产生等离子流的实验,可以通过定义明确的物理比例定律将其直接与Crab射流进行比较。射流会产生自己的嵌入式环形磁场;随着它的运动,等离子体的不稳定性会导致传播方向发生多次偏转,从而模仿了Crab射流的扭结行为。用三维数值模拟对实验进行建模,这些数值精确地显示了不稳定性如何发展并导致射流方向发生变化。

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