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Excitation of parasitic waves in forward-wave amplifiers with weak guiding fields

机译:具有弱导场的前向波放大器中的寄生波激励

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for the case of electron focusing by strong guiding magnetic fields. For many applications it is desirable to minimize these focusing fields. Therefore in this paper we analyze the problem of excitation of parasitic modes near cutoff in forward-wave amplifiers with weak focusing fields. First, we study the large-signal operation of such a device with a signal wave only and analyze the effect of a strong signal wave on the axial and transverse motion of electrons. Then, we analyze the self-excitation conditions of parasitic waves near cutoff in the presence of the signal wave. It is shown that the main effect is the suppression of parasitic waves in large signal regimes. At the same time, there is a region of device parameters where the presence of signal waves can enhance excitation of parasitic modes. The role of focusing fields in such effects is studied. A general treatment is illustrated by an example of an X-band traveling-wave tube driven by a thin annular 30 kV, 5 A electron beam and consisting of a 30 period slow-wave structure. It is shown that to provide the beam transport and simultaneously increase the interaction efficiency due to the electron transverse motion in such a tube it is enough to have focusing fields about 100 Gauss or less.
机译:对于电子通过强引导磁场聚焦的情况。对于许多应用,希望最小化这些聚焦场。因此,在本文中,我们分析了在聚焦场较弱的前向放大器中,截止频率附近的寄生模式的激发问题。首先,我们仅用信号波研究这种设备的大信号操作,并分析强信号波对电子的轴向和横向运动的影响。然后,我们分析了在信号波存在下,截止附近的寄生波的自激条件。结果表明,主要作用是抑制大信号状态下的寄生波。同时,存在器件参数区域,信号波的存在可以增强寄生模式的激励。研究了聚焦场在这种效应中的作用。通过由30 kV细环形环形电子束,5 A电子束驱动并由30周期慢波结构组成的X波段行波管的示例来说明一般处理。已经表明,由于在这种管中的电子横向运动,提供了束传输并同时提高了相互作用效率,足以具有约100高斯或更小的聚焦场。

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