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Three phases electron beam flow model for low-impedance intense-current pinched electron beam diode

  • Bin Kuai
  • , Ai Ci Qiu
  • , Liang Ping Wang
  • , Pei Tian Cong
  • , Tian Xue Liang
  • Xi'an Jiaotong University
  • Northwest Institute of Nuclear Technology

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

This paper presents a theoretical analysis model based on the parapotential flow and "four-phase" charge flow models. The model could more exactly describe the physics process in a low-impedance MA intense pinched beam diode. In the model, the evolution of electrons is divided into three phases: no pinching phase, weak pinch phase and tight pinch phase, and in each phase a proper empirical formula is provided for writing the characters of electron beam. Using the KARAT PIC program, the evolution process of electron flow is simulated in the diode, which is designed to test on the Qiangguang-I accelerator for producing intensive current pinched electron beam. Moreover, the experiment with the diode is carried out on Qiangguang-I accelerator. The contrast between simulated and experimental results shows that the theoretical analysis model called three phases electron beam model is reasonable.

Original languageEnglish
Pages (from-to)1603-1606
Number of pages4
JournalQiangjiguang Yu Lizishu/High Power Laser and Particle Beams
Volume16
Issue number12
StatePublished - Dec 2004

Keywords

  • Accelerator
  • Low impedance intense-current pinched electron beam diode
  • Parapotential flow model
  • Theoretical analysis model

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