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Investigation of the homogeneity of a high-power ion beam formed by a diode with a closed electron drift

机译:由封闭电子漂移的二极管形成的高功率离子束的均匀性研究

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摘要

The results of an investigation of the energy-density distribution over the cross section of a pulsed ion beam formed with a passive-anode diode in the mode of magnetic insulation and a closed electron drift in the anode-cathode gap are presented. Diodes of two types are studied: with external magnetic insulation (B (r) diode) on the BIPPAB-450 accelerator (400 kV, 80 ns) and self-magnetic insulation of electrons (spiral diode) on the TEMP-4M accelerator (250 kV, 120 ns). In the investigated diodes, various processes are used to form anode plasma: a breakdown over the surface of a dielectric coating on the anode and ionization of the anode surface with accelerated electrons (B (r) diode), as well as explosive emission of electrons (spiral diode). To analyze the ion-beam energy density, thermal-imaging diagnostics is used with a spatial resolution of 1-2 mm. The energy-density is calculated from the one-dimensional Child-Langmuir relationship. It is shown that a continuous plasma layer is efficiently formed on the working anode surface for all the investigated diodes. The anode-plasma concentration is rather high, and the beam-energy density is limited by the space charge of ions, but not by the plasma concentration. It is found that, when the magnetic field in the Br-diode anode-cathode gap decreases or the electron current in the spiral diode increases, the energy density of the high-power ion beam rises significantly, but the beam homogeneity decreases.
机译:提出了一种研究结果,该结果研究了在无磁阳极模式下由无源阳极二极管形成的脉冲离子束横截面上的能量密度分布,并且在阳极-阴极间隙中存在封闭的电子漂移。研究了两种类型的二极管:在BIPPAB-450加速器上使用外部磁绝缘(B(r)二极管)(400 kV,80 ns),在TEMP-4M加速器上使用电子的自磁绝缘(螺旋二极管)(250 kV,120 ns)。在所研究的二极管中,采用了各种工艺来形成阳极等离子体:阳极上电介质涂层的表面击穿和加速电子(B(r)二极管)使阳极表面电离,以及电子爆炸性发射(螺旋二极管)。为了分析离子束能量密度,使用热成像诊断程序,其空间分辨率为1-2 mm。能量密度是根据一维Child-Langmuir关系计算的。结果表明,对于所有研究的二极管,连续的等离子体层有效地形成在工作阳极表面上。阳极等离子体浓度很高,并且束能量密度受离子的空间电荷限制,但不受等离子体浓度限制。发现,当Br二极管的阳极-阴极间隙中的磁场减小或螺旋二极管中的电子电流增大时,高功率离子束的能量密度显着升高,但是束均匀性降低。

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