In Penning traps electromagnetic forces are used to confine charged particles under well-controlled conditions for virtually unlimited time. Sensitive detection methods have been developed to allow observation of single stored ions. Various cooling methods can be employed to reduce the energy of the trapped particle to nearly at rest. In this review we summarize how highly charged ions (HCIs) offer unique possibilities for precision measurements in Penning traps. Precision atomic and nuclear masses as well as magnetic moments of bound electrons allow among others to determine fundamental constants like the mass of the electron or to perform stringent tests of fundamental interactions like bound-state quantum electrodynamics. Recent results ...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The novel five-Penning-trap mass spectrometer Pentatrap is developed at the Max-Planck-Institut für ...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The possibility to store charged particles in Penning traps for long times basically at resthas enab...
In my thesis I describe the improvements of the Penning trap mass spectrometer SMILETRAP. The object...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The mass of a highly charged ion is the sum of the mass of the nucleus, the mass of the electrons an...
The mass of a highly charged ion is the sum of the mass of the nucleus, the mass of the electrons an...
A novel Penning-trap tower consisting of five compensated cylindrical Penning traps is developed for...
To date, the most successful quantum field theory is quantum electrodynamics (QED) which offers a ...
The five-Penning-trap mass spectrometer PENTATRAP is a novel high-precision experiment located at th...
The mass of a highly charged ion is the sum of the mass of the nucleus, the mass of the electrons an...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
International audienceIon traps, which were first introduced in the late 1950s and early 1960s, have...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The novel five-Penning-trap mass spectrometer Pentatrap is developed at the Max-Planck-Institut für ...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The possibility to store charged particles in Penning traps for long times basically at resthas enab...
In my thesis I describe the improvements of the Penning trap mass spectrometer SMILETRAP. The object...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The mass of a highly charged ion is the sum of the mass of the nucleus, the mass of the electrons an...
The mass of a highly charged ion is the sum of the mass of the nucleus, the mass of the electrons an...
A novel Penning-trap tower consisting of five compensated cylindrical Penning traps is developed for...
To date, the most successful quantum field theory is quantum electrodynamics (QED) which offers a ...
The five-Penning-trap mass spectrometer PENTATRAP is a novel high-precision experiment located at th...
The mass of a highly charged ion is the sum of the mass of the nucleus, the mass of the electrons an...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
International audienceIon traps, which were first introduced in the late 1950s and early 1960s, have...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...
The novel five-Penning-trap mass spectrometer Pentatrap is developed at the Max-Planck-Institut für ...
Highly charged ions represent environments that allow to study precisely one or more bound electrons...