无线电电子学报

A. Leontyev, V.E. Nechaev, E. Semenov, O. Plankin, R. Rozental
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引用次数: 0

摘要

以热电磁控管喷射枪产生的相对论电子流为基础的陀螺仪是一种很有前途的毫米和亚毫米波脉冲辐射源,其输出功率可达数百万瓦。显然,要提高此类设备的输出功率,就必须提供超过 100 A 的高束流。众所周知,大面积发射器产生的光束具有较大的速度分布,从而降低了电子波相互作用的效率。因此,有必要增大发射器的直径,并相应地增大阴极到回旋加速器腔体的距离,从而提高磁化反转系数。因此,光束形成区域的磁场会变得很弱,与周围电极的几何形状相比,电子轨迹的拉莫尔半径和转弯间距会变得很大,从而导致非绝热效应。在这项研究中,我们考虑了其中一种效应,即在阳极电压值范围内,间距因子的单调增长会停止。本文介绍了基于 ANGEL 软件包的电流管和离散源方法的轨迹分析结果,以及基于简单分析模型的磁透镜对电子束特性影响的评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Journal of Radio Electronics
Gyrotrons based on relativistic electron flows generated by thermionic magnetron injection guns are promising pulsed sources of millimeter and submillimeter radiation with multi-megawatt output power. Obviously, to increase the output power of such devices, it is necessary to provide a high beam current of more than 100 A. At the selected emission density, this forces the use of an emitter with a sufficiently large area. As is well known, wide emitters produce beams with a large velocity spread, which reduces the efficiency of the electron-wave interaction. Therefore, it is necessary to increase the diameter and, accordingly, increase the distance from the cathode to the gyrotron cavity, which leads to an increase in the magnetization reversal coefficient. Thus, the magnetic field in the region of beam formation becomes weak, and the Larmor radius and the turn pitch of the electron trajectory become large compared to the geometry of the surrounding electrodes, which can cause nonadiabatic effects. In this work, we consider one of these effects, which consists in the emergence of a range of anode voltage values in which the monotonic growth of the pitch factor stops. The results of trajectory analysis using current tube and discrete source methods based on the ANGEL software package are presented, as well as an assessment of the influence of a magnetic lens on the properties of an electron beam based on a simple analytical model.
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