We have measured electron impact ionization (EII) for Fe⁸⁺ forming Fe⁹⁺ from below the ionization threshold to 1200 eV. These measurements were carried out at the TSR heavy ion storage ring. The objective of using a storage ring is to store the ion beam initially so that metastable levels decay, thereby allowing for measurements on a well-defined ground-level ion beam. In this case, however, some metastable levels were too long lived to be removed. We discuss several methods for quantifying the metastable fraction, which we estimate to be ~30%–40%. Although metastables remain problematic, the present storage ring work improves upon other experimental geometries by limiting the metastable contamination to only a few long-lived excited levels...
Electron-impact ionization was analyzed for all 34 levels of the ground configuration of the Fe2+ io...
We have measured electron–ion recombination for C-like Mg6+ forming Mg5+, and for B-like Mg7+ formin...
We have measured dielectronic recombination (DR) for Fe¹²⁺ forming Fe¹¹⁺ using the heavy ion storage...
We have measured electron impact ionization for Fe<sup>7+</sup> from the ionization threshold up to ...
We have measured electron impact ionization for Fe7+ from the ionization threshold up to 1200 eV. Th...
We report measurements of electron impact ionization for Fe13 +, Fe16 +, and Fe17 + over collision e...
We report ionization cross section measurements for electron impact single ionization (EISI) of Fe11...
We report electron impact ionization cross section measurements for electron impact single ionizatio...
We have measured electron impact ionization from the ground state of Fe9 + and Fe10 + over the relat...
Electron-impact ionization cross sections and Maxwellian rate coefficients are presented for the Fe8...
Atomic data for electron impact ionization of all the elements from H to Ge are reviewed, the rates ...
We have calculated cross sections for electron impact ionization (EII) of P-like Fe11+ forming Si-li...
The intensity ratio of Fe XIV 264.765A/274.203A is useful to determine the electron density of solar...
We have measured electron-ion recombination for Fe XII forming Fe XI using a merged-beam configurati...
We have measured electron–ion recombination for Fe XII forming Fe XI using a merged-beam configurati...
Electron-impact ionization was analyzed for all 34 levels of the ground configuration of the Fe2+ io...
We have measured electron–ion recombination for C-like Mg6+ forming Mg5+, and for B-like Mg7+ formin...
We have measured dielectronic recombination (DR) for Fe¹²⁺ forming Fe¹¹⁺ using the heavy ion storage...
We have measured electron impact ionization for Fe<sup>7+</sup> from the ionization threshold up to ...
We have measured electron impact ionization for Fe7+ from the ionization threshold up to 1200 eV. Th...
We report measurements of electron impact ionization for Fe13 +, Fe16 +, and Fe17 + over collision e...
We report ionization cross section measurements for electron impact single ionization (EISI) of Fe11...
We report electron impact ionization cross section measurements for electron impact single ionizatio...
We have measured electron impact ionization from the ground state of Fe9 + and Fe10 + over the relat...
Electron-impact ionization cross sections and Maxwellian rate coefficients are presented for the Fe8...
Atomic data for electron impact ionization of all the elements from H to Ge are reviewed, the rates ...
We have calculated cross sections for electron impact ionization (EII) of P-like Fe11+ forming Si-li...
The intensity ratio of Fe XIV 264.765A/274.203A is useful to determine the electron density of solar...
We have measured electron-ion recombination for Fe XII forming Fe XI using a merged-beam configurati...
We have measured electron–ion recombination for Fe XII forming Fe XI using a merged-beam configurati...
Electron-impact ionization was analyzed for all 34 levels of the ground configuration of the Fe2+ io...
We have measured electron–ion recombination for C-like Mg6+ forming Mg5+, and for B-like Mg7+ formin...
We have measured dielectronic recombination (DR) for Fe¹²⁺ forming Fe¹¹⁺ using the heavy ion storage...