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Improvement of beam macropulse properties using slim thermionic cathode in IAE RF gun

机译:使用IAE射频枪中的细长热电子阴极改善电子束大脉冲特性

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摘要

A long beam macropulse is strongly required for free-electron lasers. RF guns can potentially produce high brightness electron beam using a simple and compact system. However, due to a back-bombardment, a cathode surface is overheated. Thus, it is difficult to maintain a constant beam current and beam energy during a macropulse. The use of a photo cathode with a short-pulsed laser is one of the solutions, but it affects the simplicity and the compactness of the RF guns. We studied a mechanism of back-bombardment and experimentally and numerically found that a low energy component of the back-streaming electrons plays an important role in cathode surface heating.
机译:自由电子激光器强烈需要长光束大脉冲。射频枪可以使用简单而紧凑的系统产生高亮度电子束。然而,由于后部轰击,阴极表面过热。因此,在大脉冲期间难以维持恒定的束电流和束能量。解决方案之一是将光阴极与短脉冲激光一起使用,但这会影响射频枪的简单性和紧凑性。我们研究了反向轰击的机理,并通过实验和数值研究发现,反向电子的低能组分在阴极表面加热中起着重要作用。

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