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Pole-Piece With Stepped Hole for Stable Sheet Electron Beam Transport Under Uniform Magnetic Field

机译:带有阶梯孔的杆件,用于在均匀磁场下稳定地传输电子束

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摘要

An electron gun is designed for a W-band sheet beam TWT using a planar rectangular cathode working in the space charge limited region. A permanent magnet solenoid focusing system is designed to focus the beam. A pole-piece with a novel multisized (stepped) hole is investigated for stable transport of the beam. The size of the hole in the pole-piece is larger near to the magnets and it is gradually decreased stepwise toward the cathode. The pole-piece with the multisized hole reduces both the transverse magnetic field and magnitude of flux leakage toward the cathode. Simulation results show that the sheet beam transports without significant beam ripple and edge curling under the magnetic field of the designed focusing structure with the pole-piece of multisized hole. The thermal velocity of the electrons is also considered in the simulation. The beam transmission up to 70-mm distance is 98.8% and 97.3%, respectively, for nonthermal and thermal beam under the magnetic field of the designed focusing system.
机译:使用在空间电荷受限区域中工作的平面矩形阴极,为W带薄板束TWT设计电子枪。永磁螺线管聚焦系统设计用于聚焦光束。为了稳定传输光束,研究了带有新颖的多尺寸(阶梯)孔的极靴。极靴中的孔的尺寸在靠近磁铁的地方较大,并且朝着阴极逐渐减小。带有多尺寸孔的极靴可减小横向磁场并减小通向阴极的磁通量泄漏。仿真结果表明,在设计的带有大孔极靴的聚焦结构的磁场作用下,薄板束的传输没有明显的束纹和边缘卷曲。模拟中还考虑了电子的热速度。在设计的聚焦系统的磁场下,非热光束和热光束在70毫米距离处的光束透射率分别为98.8%和97.3%。

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