Highly charged ions provide a unique opportunity to test our understanding of atomic properties under extreme conditions: The electric field strength seen by an electron bound to a nucleus at the distance of the Bohr radius ranges from 1010 V/cm in hydrogen to1016 V/cm in hydrogenlike uranium. The theory of quantum electrodynamics (QED) allows for calculation e.g. of binding energies, transition probabilities or magnetic moments. While at low fields QED is tested to very high precision, new, hypothetical nonlinear effects like photon- photon interaction or a violation of Lorentz symmetry may occur in strong fields which then would lead to an extension of the Standard Model. The ultra-high precision determination of the magnetic moment of a ...
This thesis describes the ultra-precise determination of the g-factor of the electron bound to hydro...
The mass of the electron is best determined with hydrogen-like ions in|a Penning trap. Binding in an...
Quantum electrodynamics (QED) is one of the most fundamental theories of physics and has been shown ...
Highly charged ions provide a unique opportunity to test our understanding of atomic properties unde...
This thesis describes the design and construction of an experiment to test quantum electrodynamics (...
The quantum electrodynamic (QED) description of light-and-matter interaction is one of the most fund...
The magnetic moment of the electron, expressed by the g-factor in units of the Bohr magneton, is a k...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The magnetic moment of the electron, expressed by the g-factor in units of the Bohr magneton, is a k...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The ALPHATRAP experiment at the Max-Planck Institute for Nuclear Physics in Heidelberg aims at probi...
The bound electron g-factor is one of the most precisely measured and calculated quantities in atomi...
The g-factor is a constant which connects the magnetic moment $vec{mu}$ of a charged particle, of ch...
This thesis describes the ultra-precise determination of the g-factor of the electron bound to hydro...
The mass of the electron is best determined with hydrogen-like ions in|a Penning trap. Binding in an...
Quantum electrodynamics (QED) is one of the most fundamental theories of physics and has been shown ...
Highly charged ions provide a unique opportunity to test our understanding of atomic properties unde...
This thesis describes the design and construction of an experiment to test quantum electrodynamics (...
The quantum electrodynamic (QED) description of light-and-matter interaction is one of the most fund...
The magnetic moment of the electron, expressed by the g-factor in units of the Bohr magneton, is a k...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The magnetic moment of the electron, expressed by the g-factor in units of the Bohr magneton, is a k...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The ALPHATRAP experiment at the Max-Planck Institute for Nuclear Physics in Heidelberg aims at probi...
The bound electron g-factor is one of the most precisely measured and calculated quantities in atomi...
The g-factor is a constant which connects the magnetic moment $vec{mu}$ of a charged particle, of ch...
This thesis describes the ultra-precise determination of the g-factor of the electron bound to hydro...
The mass of the electron is best determined with hydrogen-like ions in|a Penning trap. Binding in an...
Quantum electrodynamics (QED) is one of the most fundamental theories of physics and has been shown ...