We have measured electron–ion recombination for Fe XII forming Fe XI using a merged-beam configuration at the heavy-ion storage ring TSR located at the Max Planck Institute for Nuclear Physics in Heidelberg, Germany. The measured merged-beam recombination rate coefficient (MBRRC) for collision energies from 0 to 1500 eV is presented. This work uses a new method for determining the absolute MBRRC based on a comparison of the ion beam decay rate with and without the electron beam on. For energies below 75 eV, the spectrum is dominated by dielectronic recombination (DR) resonances associated with 3s → 3p and 3p → 3d core excitations. At higher energies, we observe contributions from 3 → N' and 2 → N' core excitation DR. We compare our experime...
We have measured dielectronic recombination (DR) for Fe12 + forming Fe11 + using the heavy ion stora...
We have measured resonance strengths and energies for dielectronic recombination (DR) of Fe XIX form...
We have measured resonance strengths and energies for dielectronic recombination (DR) of Fe XIX form...
We have measured electron-ion recombination for Fe XII forming Fe XI using a merged-beam configurati...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
We have measured electron-ion recombination for Fe9+ forming Fe8+ and for Fe10+ forming Fe9+ using a...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
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...
We have measured dielectronic recombination (DR) for Fe¹²⁺ forming Fe¹¹⁺ using the heavy ion storage...
We have measured electron-ion recombination for Fe9+ forming Fe8+ and for Fe10+ forming Fe9+ using a...
We have measured dielectronic recombination (DR) for Fe12 + forming Fe11 + using the heavy ion stora...
We have measured resonance strengths and energies for dielectronic recombination (DR) of Fe XIX form...
We have measured resonance strengths and energies for dielectronic recombination (DR) of Fe XIX form...
We have measured electron-ion recombination for Fe XII forming Fe XI using a merged-beam configurati...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
We have measured electron-ion recombination for Fe9+ forming Fe8+ and for Fe10+ forming Fe9+ using a...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
using a merged beams arrangement at the TSR heavy-ion storage ring in Heidelberg, Germany. The measu...
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...
We have measured dielectronic recombination (DR) for Fe¹²⁺ forming Fe¹¹⁺ using the heavy ion storage...
We have measured electron-ion recombination for Fe9+ forming Fe8+ and for Fe10+ forming Fe9+ using a...
We have measured dielectronic recombination (DR) for Fe12 + forming Fe11 + using the heavy ion stora...
We have measured resonance strengths and energies for dielectronic recombination (DR) of Fe XIX form...
We have measured resonance strengths and energies for dielectronic recombination (DR) of Fe XIX form...