The Alphatrap experiment is a cryogenic Penning-trap setup with the main objective to determine the g factor of the electron bound to heavy nuclei. Within this thesis, the results of several such measurements are presented. Among these, the measurement of the g factor of 20Ne9+ exhibits a 3σ discrepancy between theory and experimental value, which has been attributed to the required input parameter of the atomic mass of 20Ne. An independent measurement has recently confirmed the deviation of the mass, fully resolving the discrepancy. Furthermore, a measurement of 22Ne9+ can be used to improve the precision of the atomic mass of 22Ne by a factor 8 compared to the literature value, when using the theoretically predicted g factor as an input....
The determination of the electron mass from Penning-trap measurements with 12C5+ ions and from theor...
The accurate determination of atomic masses and the high-precision measurement of the bound-electron...
ALPHATRAP is a Penning-trap based experiment located at the Max-Planck-Institut für Kernphysik (MPIK...
The Alphatrap experiment is a cryogenic Penning-trap setup with the main objective to determine the ...
Quantum electrodynamics (QED) is one of the most fundamental theories of physics and has been shown ...
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 quantum electrodynamic (QED) description of light-and-matter interaction is one of the most fund...
In this thesis, the first high-precision measurement of the ground-state $g$-factor of a boronlike i...
In the context of this thesis the electron mass has been determined in atomic mass units with a rela...
In the context of this thesis the electron mass has been determined in atomic mass units with a rela...
In this thesis, the first high-precision measurement of the ground-state g-factor of a boronlike ion...
We have measured the ground-state g factor of boronlike argon 40Ar13+ with a fractional uncertainty ...
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...
The determination of the electron mass from Penning-trap measurements with 12C5+ ions and from theor...
The accurate determination of atomic masses and the high-precision measurement of the bound-electron...
ALPHATRAP is a Penning-trap based experiment located at the Max-Planck-Institut für Kernphysik (MPIK...
The Alphatrap experiment is a cryogenic Penning-trap setup with the main objective to determine the ...
Quantum electrodynamics (QED) is one of the most fundamental theories of physics and has been shown ...
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 quantum electrodynamic (QED) description of light-and-matter interaction is one of the most fund...
In this thesis, the first high-precision measurement of the ground-state $g$-factor of a boronlike i...
In the context of this thesis the electron mass has been determined in atomic mass units with a rela...
In the context of this thesis the electron mass has been determined in atomic mass units with a rela...
In this thesis, the first high-precision measurement of the ground-state g-factor of a boronlike ion...
We have measured the ground-state g factor of boronlike argon 40Ar13+ with a fractional uncertainty ...
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...
The determination of the electron mass from Penning-trap measurements with 12C5+ ions and from theor...
The accurate determination of atomic masses and the high-precision measurement of the bound-electron...
ALPHATRAP is a Penning-trap based experiment located at the Max-Planck-Institut für Kernphysik (MPIK...