paper

Universal main magnetic focus ion source: A new tool for laboratory research of astrophysics and Tokamak microplasma

arXiv:1611.06984 · doi:10.1088/1742-6596/798/1/012170

Abstract

A novel room-temperature ion source for the production of atomic ions in electron beam within wide ranges of electron energy and current density is developed. The device can operate both as conventional Electron Beam Ion Source/Trap (EBIS/T) and novel Main Magnetic Focus Ion Source. The ion source is suitable for generation of the low-, medium- and high-density microplasma in steady state, which can be employed for investigation of a wide range of physical problems in ordinary university laboratory, in particular, for microplasma simulations relevant to astrophysics and ITER reactor. For the electron beam characterized by the incident energy keV, the current density kA/cm and the number density cm were achieved experimentally. For keV, the value of electron number density cm is feasible. The efficiency of the novel ion source for laboratory astrophysics significantly exceeds that of other existing warm and superconducting EBITs. A problem of the K-shell electron ionization of heavy and superheavy elements is also discussed.

9 pages, 7 figures, talk presented at the 2nd International Conference on Particle Physics and Astrophysics (ICPPA-2016), 10-14 October 2016, Moscow

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