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Space and time resolved electron density and current measurements in a dense plasma focus Z-pinch

机译:在密集的等离子聚焦Z夹中进行时空分辨的电子密度和电流测量

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Plasma density and current profiles in a Z-pinch are important parameters to understand the implosion and radiation physics. This paper describes measurements of electron density and current at radii of /spl ges/200 /spl mu/m from the axis of a dense plasma focus (DPF) pinch plasma that is imploded by a /spl ap/0.3 MA current pulse. These measurements use laser interferometry and polarimetry. The electromagnetic wave propagating through a current carrying plasma will change its phase, polarization state, and propagation direction. Refraction by electrons bends the wave fronts and changes the propagation direction; Faraday rotation due to the magnetic field and electron density rotates the laser polarization vector. By measuring these quantities simultaneously, the magnetic field and electron density can be separately determined. Although the DPF used here is a low current device, the measured densities (/spl les/10/sup 20/ cm/sup -3/) and magnetic fields (/spl sim/100 T) are similar to values expected just outside higher current but larger radius Z-pinches, so this technique should be applicable there as well. The techniques described here do not require access to the core of the pinch to work; just outside these pinches the coronal density and self-magnetic field are high enough to give reliable data but not so high as to make the measurements difficult.
机译:Z型夹中的等离子体密度和电流分布是了解内爆和辐射物理的重要参数。本文介绍了从/ spl ap / 0.3 MA电流脉冲撞击到的密集等离子体焦点(DPF)收缩等离子体的轴测量的电子密度和电流,半径为/ spl ges / 200 / spl mu / m。这些测量使用激光干涉仪和偏振仪。通过载流等离子体的电磁波将改变其相位,极化状态和传播方向。电子的折射使波前弯曲并改变了传播方向。由于磁场和电子密度引起的法拉第旋转使激光偏振矢量旋转。通过同时测量这些量,可以分别确定磁场和电子密度。尽管此处使用的DPF是低电流设备,但测得的密度(/ spl les / 10 / sup 20 / cm / sup -3 /)和磁场(/ spl sim / 100 T)与预期值稍高一些电流但半径较大的Z形夹点,因此该技术也应适用于此。此处描述的技术不需要接触捏的核心即可工作。仅在这些夹点之外,日冕密度和自磁场足以提供可靠的数据,但又不至于使测量变得困难。

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