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Measurement of pulsed-power-driven magnetic fields via proton deflectometry

机译:通过质子偏转测量脉冲功率驱动的磁场

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Measuring magnetic field and current distribution in Z-pinch plasma systems is crucial to the validation of Z-pinch theory. In this letter, the demonstration of proton deflectometry to pulsed-power-driven loads at the mega-amp scale is presented, which is capable of making more detailed field maps in high-density regions of plasmas. In this method, a laser-driven, broad-spectrum, MeV-energy proton beam is directed through a pulsed-power-driven plasma system, and the resulting deflections are measured to examine configuration of magnetic fields and to infer the currents that support them. The technique was first demonstrated on simple short-circuit loads, and the results are in excellent agreement with numerical simulations providing reliable estimates of the field and current configurations. It was then applied to a more complex—radial foil—plasma load. The measurements show unexpected proton deflections that exhibit the complexity of the plasma load and that with further analysis will reveal details about the current and magnetic field topology in this complex configuration.
机译:测量Z捏等离子体系统中的磁场和电流分布对于Z捏理论的验证至关重要。在这封信中,演示了质子偏转技术在兆安培规模上对脉冲功率驱动的负载的演示,它能够在等离子体的高密度区域中绘制更详细的场图。在这种方法中,激光驱动的宽谱MeV能量质子束穿过脉冲功率驱动的等离子体系统,然后测量所产生的偏转以检查磁场的配置并推断支持它们的电流。该技术首先在简单的短路负载下进行了演示,其结果与数值模拟非常吻合,数值模拟提供了对磁场和电流配置的可靠估计。然后将其应用于更复杂的-径向箔-等离子体载荷。测量显示出意外的质子挠曲,这表明了等离子体负载的复杂性,并且通过进一步的分析将揭示有关这种复杂配置中电流和磁场拓扑的详细信息。

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