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Numerical modeling and experiments by forming electron beam for relativistic klystron on linear induction accelerator

机译:线性感应加速器上相对论速调管形成电子束的数值模拟与实验

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Abstract: The results of numercial modeling and experimental investigations of the linear induction accelerator operation where relativistic clystron is applied as a load are presented. The electron gun with the dielectric emitter (DE) is employed as the injector for this system. As a result of this investigation, the electro-optical system has been successfully realized allowing us to form electron beams sufficiently homogeneous in cross-section with current level of no less than 150 A. Compression of the beam from DE at the first stage of moving is supported, essentially, due to a system of focusing electrodes, similar to Pierce optics. Then, compression of the beam to the size required for its free motion in the anode tract and clystron's drift tube occurs in increasing external magnetic field. In this purpose, the configuration of tracking magnetic field was calculated and suitable magnetic system has been made. The results obtained experimentally are in good agreement with calculated data. With emitting dielectric surface of 50mm in diameter the laminar electron beam of 8mm in diameter was obtained. At accelerating voltage of 400kV and pulse duration of 120ns, required for the excitation of the X-band clystron amplifier the value of current was of the order of 200 A. Prints of the beam on targets allow us to make the same findings. !7
机译:摘要:给出了以相对论速调子为负载的线性感应加速器运行的数值模拟结果和实验研究。具有电介质发射器(DE)的电子枪被用作该系统的喷射器。这项研究的结果是,成功地实现了电光系统,使我们能够形成横截面足够均匀的电子束,电流水平不小于150A。基本上,由于与皮尔斯光学系统类似的聚焦电极系统的缘故,该光学系统得以支撑。然后,在外部磁场增加的情况下,将束压缩到其在阳极束和速调管的漂移管中自由运动所需的大小。为此,计算了跟踪磁场的配置,并建立了合适的磁系统。实验获得的结果与计算数据非常吻合。通过发射直径为50mm的电介质表面,获得了直径为8mm的层状电子束。在激发X波段速调管放大器所需的400kV加速电压和120ns脉冲持续时间下,电流值约为200A。束在目标上的印记使我们能够得出相同的发现。 !7

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