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Magnetic quadrupole formation of elliptical sheet electron beams for high-power microwave devices

机译:大功率微波装置用椭圆形片状电子束的磁性四极形成

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Sheet electron beams are attractive for high-power microwave sources due to their ability to transport high current, at reduced current density, through thin clearance apertures and in close proximity to walls or RF structures. This paper reports on the theoretical investigation of magnetic quadrupole formation of elliptical sheet electron beams for use in high-power microwave devices. The beam envelope equations for an initially round beam passing through a physical non-symmetric quadrupole pair in the presence of space-charge, finite beam emittance, and under the effects of third-order field components and longitudinal velocity variations are presented. The presence of space-charge compensates for over-focusing in the thin beam-dimension and allows for the formation of highly elliptic sheet electron beams. As an example, the results of our study were applied to an existing Pierce gun source with a beam radius of 0.6 cm, beam energy of 10 keV and current density of 2.0 A/cm/sup 2/. We find that an elliptical beam with major radius r/sub a/=3.61 cm, minor radius r/sub b/=0.16 cm and ellipticity (r/sub a//r/sub b/) of 22.5 can be produced with only modest quadrupole gradients of 64 G/cm and 18 G/cm. Quadrupole formation of elliptical sheet-beams may be particularly suited for experimental research applications since existing round-beam electron guns may be used and changes in beam ellipticity may be made without breaking the vacuum system.
机译:薄层电子束对大功率微波源具有吸引力,这是因为薄层电子束能够以减小的电流密度通过薄的间隙孔并紧邻壁或RF结构传输高电流。本文报道了用于大功率微波设备的椭圆形薄片电子束的磁性四极形成的理论研究。提出了在空间电荷,有限束发射率以及三阶场分量和纵向速度变化的影响下,穿过物理非对称四极对的初始圆形束的束络方程。空间电荷的存在补偿了细束尺寸中的过度聚焦,并允许形成高度椭圆的片状电子束。例如,我们的研究结果应用于现有的皮尔斯枪源,其束半径为0.6 cm,束能量为10 keV,电流密度为2.0 A / cm / sup 2 /。我们发现,仅用以下方法就可以产生长半径r / sub a / = 3.61 cm,短半径r / sub b / = 0.16 cm和椭圆率(r / sub a // r / sub b /)为22.5的椭圆光束适度的四极梯度为64 G / cm和18 G / cm。椭圆形片束的四极形成可能特别适合于实验研究应用,因为可以使用现有的圆形束电子枪,并且可以在不破坏真空系统的情况下改变束的椭圆率。

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