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Theoretical and Experimental Investigation on Intense Sheet Electron Beam Transport With Its Diocotron Instability in a Uniform Magnetic Field

机译:均匀磁场中电子束流向电子不稳定性的强片电子束传输的理论和实验研究

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摘要

In this paper, the cold-fluid model theory of an intense sheet electron beam is developed to investigate the diocotron instability during its transport in a uniform magnetic field. The model shows that if the magnetic field strength and the beam filling factor are increased separately, the diocotron instability will be suppressed, which extends the sheet-beam transport distance effectively. To verify the above conclusion, a set of complicated instruments, the electron beam measuring and analyzing system (EBMAS), was developed to measure the beam cross section, beam current density, and the 3-D trajectory. The sheet electron beam transport process in a uniform magnetic field with its diocotron instability is investigated on the basis of EBMAS measurements. The measured results agree very well with theoretical calculation and numerical simulation. A sheet-electron-beam tube based on a uniform magnetic field was then manufactured to drive a future W-band sheet-beam klystron (WSBK). Tuning the sheet-beam parameters over a broad range, including a cathode voltage range of 20–82 kV, current range of 0.5–4.27 A, and with a beam cross section of about 10 mm $times,$ 0.5 mm, the experimental beam transmission rate is above 98% through a beam tunnel of 100 mm in length.
机译:在本文中,发展了强片状电子束的冷流体模型理论,以研究在均匀磁场中电子对子在传输过程中的不稳定性。该模型表明,如果分别增加磁场强度和束流填充因子,将抑制电子对子的不稳定性,从而有效地延长了电子束的传输距离。为了验证上述结论,开发了一套复杂的仪器,即电子束测量和分析系统(EBMAS),用于测量电子束横截面,电子束电流密度和3-D轨迹。基于EBMAS测量,研究了在均匀磁场中其电子对子不稳定的薄层电子束传输过程。测量结果与理论计算和数值模拟非常吻合。然后制造了基于均匀磁场的电子束管,以驱动未来的W波段电子束速调管(WSBK)。在宽范围内调整薄板参数,包括阴极电压范围为20–82 kV,电流范围为0.5–4.27 A,并且光束横截面约为10毫米×0.5毫米,实验光束通过长度为100 mm的光束隧道,传输率超过98%。

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