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Method for estimating charge breeder ECR ion source plasma parameters with short pulse 1+ injection

Plasma Physics 2021-06-30 v1

Abstract

A new method for determining plasma parameters from beam current transients resulting from short pulse 1+ injection into a Charge Breeder Electron Cyclotron Resonance Ion Source (CB-ECRIS) has been developed. The proposed method relies on few assumptions, and yields the ionisation times 1/neσvqq+1inz1/n_e\left\langle\sigma v\right\rangle^{\text{inz}}_{q\to q+1}, charge exchange times 1/n0σvqq1cx1/n_0\left\langle\sigma v\right\rangle^{\text{cx}}_{q\to q-1}, the ion confinement times τq\tau^q, as well as the plasma energy contents neEen_e\left\langle E_e\right\rangle and the plasma triple products neEeτqn_e \left\langle E_e\right\rangle \tau^q. The method is based on fitting the current balance equation on the extracted beam currents of high charge state ions, and using the fitting coefficients to determine the postdictions for the plasma parameters via an optimisation routine. The method has been applied for the charge breeding of injected K+^+ ions in helium plasma. It is shown that the confinement times of Kq+^{q+} charge states range from 2.60.4+0.8^{+0.8}_{-0.4} ms to 16.46.8+18.3^{+18.3}_{-6.8} ms increasing with the charge state. The ionisation and charge exchange times for the high charge state ions are 2.60.5+0.5^{+0.5}_{-0.5} ms--12.63.2+2.6^{+2.6}_{-3.2} ms and 3.71.6+5.0^{+5.0}_{-1.6} ms--357.7242.4+406.7^{+406.7}_{-242.4} ms, respectively. The plasma energy content is found to be 2.51.8+4.3×10152.5^{+4.3}_{-1.8}\times 10^{15} eV/cm3^3.

Keywords

Cite

@article{arxiv.2103.03546,
  title  = {Method for estimating charge breeder ECR ion source plasma parameters with short pulse 1+ injection},
  author = {J. Angot and M. Luntinen and T. Kalvas and H. Koivisto and R. Kronholm and L. Maunoury and O. Tarvainen and T. Thuillier and V. Toivanen},
  journal= {arXiv preprint arXiv:2103.03546},
  year   = {2021}
}

Comments

31 pages, 11 figures. This is an author-created, un-copyedited version of an article accepted for publication in Plasma Sources Science and Technology. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it

R2 v1 2026-06-23T23:47:35.109Z