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Study of the Fine Structure of the Plasma Current Sheath and Magnetic Fields in the Axial Region of the PF-1000 Facility

机译:PF-1000设备轴向区域等离子体流鞘和磁场的精细结构研究

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摘要

Results of measurements of magnetic fields in the plasma pinching region during the compression of the deuterium plasma current sheath (PCS) at the PF-1000 plasma focus facility are presented. The fine structure of the PCS (shock wave-magnetic piston) and its variations in the course of plasma compression toward the facility axis are studied using magnetic probes and laser interferometry. The radial distributions of the plasma density and current in the PCS are compared. It is shown that, in the shock wave region, the electron density of the compressed plasma is on the order of ~10~(18) cm~(-3), whereas the PCS current is almost entirely concentrated in the magnetic piston region-a plasma layer with an electron density of less than 10~(15) cm~(-3). Efficient transportation of the current by the PCS into the axial region of the facility in discharges with a high neutron yield (Y_n > 10~(11) neutrons/shot) is detected. It is shown that the total neutron yield is well described by the dependence Y_n ≈ (1.5-3) × 10~(10) I_p~4, where I_p is the pinch current (in MA) flowing within the region r ≤ 13 mm.
机译:给出了在PF-1000等离子体聚焦设备上压缩氘等离子体流护套(PCS)期间等离子体收缩区域中磁场的测量结果。使用磁探针和激光干涉仪研究了PCS(冲击波电磁活塞)的精细结构及其在等离子体向设备轴方向压缩过程中的变化。比较了PCS中等离子体密度和电流的径向分布。结果表明,在冲击波区域中,压缩等离子体的电子密度约为〜10〜(18)cm〜(-3),而PCS电流几乎完全集中在磁性活塞区域中-电子密度小于10〜(15)cm〜(-3)的等离子体层。在中子产量高(Y_n> 10〜(11)中子/发射)的放电中,PCS有效地将电流传输到设备的轴向区域。结果表明,中子的总产量可以由依赖关系Y_n≈(1.5-3)×10〜(10)I_p〜4很好地描述,其中I_p是在r≤13 mm区域内流动的收缩电流(以MA为单位)。

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