Analytic model of a magnetically insulated transmission line with collisional flow electrons

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W. A. Stygar; T. C. Wagoner; H. C. Ives; P. A. Corcoran; M. E. Cuneo; J. W. Douglas; T. L. Gilliland; M. G. Mazarakis; J. J. Ramirez; J. F. Seamen; D. B. Seidel; R. B. Spielman; (2006)
  • Publisher: American Physical Society
  • Journal: Physical Review Special Topics. Accelerators and Beams (issn: 1098-4402)
  • Related identifiers: doi: 10.1103/PhysRevSTAB.9.090401
  • Subject: Nuclear and particle physics. Atomic energy. Radioactivity | QC770-798

We have developed a relativistic-fluid model of the flow-electron plasma in a steady-state one-dimensional magnetically insulated transmission line (MITL). The model assumes that the electrons are collisional and, as a result, drift toward the anode. The model predicts ... View more
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