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Use of velvet cathodes for the generation of intense relativistic electron beams in pulse vacuum diodes

机译:使用天鹅绒阴极在脉冲真空二极管中产生强相对论电子束

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The technology used for the intense relativistic electron beam production has advanced significantly and is wide spread in use for variety of pulsed power applications generating several mega-watts of beam power. The production of such intense electron beams begins from electron source. In majority of applications the main requirement for electron beam quality is its uniformity and low divergence and these properties are dominated by type of source used. The most commonly used cold cathode explosive emission source includes wide variety of materials like aluminum, graphite and stainless steel. In the non-explosive filed emission category common velvet cloth has been found to be an excellent field emitter. It has low electric field threshold for plasma initiation, emits very uniformly, has low gap closure velocity and is moreover inexpensive and easy to use. The additional qualities in velvet cathodes as compared to other cathode materials is found due to large number of field enhancement points on the fiber and non conducting nature of the material. Though the fibers are initially non conducting surface flash over along the fibers play an important role in plasma production. Velvet cathodes provide electron beams with brightness two orders of magnitude higher than conventional thermoionic cathodes. This paper mainly focuses upon the mechanism and modeling of plasma initiation in the fast pulse vacuum diodes having velvet cathode along with experimental results and the setup. Experiments in this reference have been carried out in axially symmetric planar diode configuration.
机译:用于产生强烈的相对论性电子束的技术已经有了很大的进步,并且在产生数兆瓦电子束功率的各种脉冲功率应用中得到了广泛的应用。这种强电子束的产生是从电子源开始的。在大多数应用中,对电子束质量的主要要求是其均匀性和低发散性,这些特性受所用光源类型的支配。最常用的冷阴极爆炸物发射源包括多种材料,例如铝,石墨和不锈钢。在非爆炸场发射类别中,人们发现普通的天鹅绒布是一种出色的场发射器。它具有用于等离子体引发的低电场阈值,发射非常均匀,间隙闭合速度低,并且价格便宜且易于使用。与天鹅绒阴极相比,其他阴极材料具有更高的质量,这是由于纤维上存在大量的场增强点以及该材料的非导电特性。尽管纤维最初是不导电的,但沿纤维的表面飞边在等离子体产生中起着重要作用。天鹅绒阴极为电子束提供的亮度比常规热离子阴极高两个数量级。本文主要研究具有天鹅绒阴极的快速脉冲真空二极管中等离子体引发的机理和模型,以及实验结果和设置。该参考文献中的实验是在轴向对称平面二极管配置中进行的。

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