Atomic properties of multiply charged ions have been investigated using excitation of energetic heavy ion beams. Spectroscopy of excited atomic transitions has been applied from the visible to the extreme ultraviolet wavelength regions to provide accurate atomic structure and transition rate data in selected highly ionized atoms. High-resolution position-sensitive photon detection has been introduced for measurements in the ultraviolet region. The detailed structures of Rydberg states in highly charged beryllium-like ions have been measured as a test of long-range electron-ion interactions. The measurements are supported by multiconfiguration Dirac-Fock calculations and by many-body perturbation theory. The high-angular-momentum Rydberg tra...
One of the most important atomic properties governing an element's chemical behavior is the energy r...
In recent years, various highly charged ions (HCI) with optical transitions have been proposed for m...
We have performed atomic structure calculations of Be-like C, N, O and Ne ions using systematically ...
The research program at the Heidelberg Electron Beam Ion Trap (EBIT) has concentrated mainly on prec...
Few-electron ions, which can be produced and studied at rest in electron beam ion traps (EBITs) are ...
This thesis explores the use of highly-charged ions in a range of applications. A special class of h...
Fundamental interactions and symmetries define the structure and properties of all matter, in partic...
Spectroscopy performed with the three Livermore electron beam ion traps is reviewed, which is contin...
A method, based on the multiconfiguration Hartree-Fock approach, for ab initio calculations of Rydbe...
The results of experimental study of magnetic dipole (M1) transitions in highly charged ions of argo...
High Rydberg states of atoms and molecules possess unusual properties that can be exploited in chemi...
Forbidden optical transitions in highly charged ions have become subject of extensive theoretical in...
In this thesis we investigate strong-field relativistic processes in highly charged ions. In the fir...
We have set up two collinear fast beam/laser excitation systems, one at the Argonne Dynamitron Accel...
We present a review of our fully relativistic approach to calculating atomic data for highly charged...
One of the most important atomic properties governing an element's chemical behavior is the energy r...
In recent years, various highly charged ions (HCI) with optical transitions have been proposed for m...
We have performed atomic structure calculations of Be-like C, N, O and Ne ions using systematically ...
The research program at the Heidelberg Electron Beam Ion Trap (EBIT) has concentrated mainly on prec...
Few-electron ions, which can be produced and studied at rest in electron beam ion traps (EBITs) are ...
This thesis explores the use of highly-charged ions in a range of applications. A special class of h...
Fundamental interactions and symmetries define the structure and properties of all matter, in partic...
Spectroscopy performed with the three Livermore electron beam ion traps is reviewed, which is contin...
A method, based on the multiconfiguration Hartree-Fock approach, for ab initio calculations of Rydbe...
The results of experimental study of magnetic dipole (M1) transitions in highly charged ions of argo...
High Rydberg states of atoms and molecules possess unusual properties that can be exploited in chemi...
Forbidden optical transitions in highly charged ions have become subject of extensive theoretical in...
In this thesis we investigate strong-field relativistic processes in highly charged ions. In the fir...
We have set up two collinear fast beam/laser excitation systems, one at the Argonne Dynamitron Accel...
We present a review of our fully relativistic approach to calculating atomic data for highly charged...
One of the most important atomic properties governing an element's chemical behavior is the energy r...
In recent years, various highly charged ions (HCI) with optical transitions have been proposed for m...
We have performed atomic structure calculations of Be-like C, N, O and Ne ions using systematically ...