The success of many measurements in analytical mass spectrometry as well as in precision mass determinations for atomic and nuclear physics is handicapped when the ion sources deliver “contaminations”, i.e., unwanted ions of masses similar to those of the ions of interest. In particular, in ion-trapping devices, large amounts of contaminant ions result in significant systematic errors—if the measurements are possible at all. We present a solution for such cases: The ions from a quasi-continuous source are bunched in a linear radio-frequency-quadrupole ion trap, separated by a multi-reflection time-of-flight section followed by a Bradbury–Nielsen gate, and then captured in a Penning trap. Buffer-gas cooling is used to damp the ion motion in ...
The concept and method for mass selective ion transfer and accumulation within quadrupole ion trap a...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
According to the energy-mass equivalence, E=mc2, excited long-lived nuclear states, so-called isomer...
The success of many measurements in analytical mass spectrometry as well as in precision mass determ...
A Penning trap ion accumulator, cooler, and buncher for low energy ion beams has been developed for ...
ISOLTRAP is a Penning trap spectrometer at the on-line mass separator ISOLDE at CERN for the mass de...
The influence of space charge on the mass selection of ions stored in a Penning trap was investigate...
Penning traps can be used as mass spectrometers of extremely high resolving power, accuracy and sens...
An ion beam cooler and buncher has been developed for the manipulation of radioactive ion beams. The...
Trapping devices for atomic and nuclear physics experiments with radioactive ions are becoming more ...
Penning-trap mass spectrometry has reached a state that allows its application to very short-lived i...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The application of Penning traps for mass spectrometry has led to a major step in the mass precision...
The Penning-trap mass spectrometer ISOLTRAP, located at the isotope-separator facility ISOLDE (CERN)...
The Penning-trap mass spectrometer ISOLTRAP, located at the isotope-separator facility ISOLDE (CERN)...
The concept and method for mass selective ion transfer and accumulation within quadrupole ion trap a...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
According to the energy-mass equivalence, E=mc2, excited long-lived nuclear states, so-called isomer...
The success of many measurements in analytical mass spectrometry as well as in precision mass determ...
A Penning trap ion accumulator, cooler, and buncher for low energy ion beams has been developed for ...
ISOLTRAP is a Penning trap spectrometer at the on-line mass separator ISOLDE at CERN for the mass de...
The influence of space charge on the mass selection of ions stored in a Penning trap was investigate...
Penning traps can be used as mass spectrometers of extremely high resolving power, accuracy and sens...
An ion beam cooler and buncher has been developed for the manipulation of radioactive ion beams. The...
Trapping devices for atomic and nuclear physics experiments with radioactive ions are becoming more ...
Penning-trap mass spectrometry has reached a state that allows its application to very short-lived i...
The novel Penning-trap mass spectrometer PENTATRAP aims at mass-ratio determinations of medium-heavy...
The application of Penning traps for mass spectrometry has led to a major step in the mass precision...
The Penning-trap mass spectrometer ISOLTRAP, located at the isotope-separator facility ISOLDE (CERN)...
The Penning-trap mass spectrometer ISOLTRAP, located at the isotope-separator facility ISOLDE (CERN)...
The concept and method for mass selective ion transfer and accumulation within quadrupole ion trap a...
Penning-trap mass spectrometry in atomic and nuclear physics has become a well-established and relia...
According to the energy-mass equivalence, E=mc2, excited long-lived nuclear states, so-called isomer...