The goal of the THe-Trap experiment is to measure the tritium/helium-3 mass ratio in order to deduce the Q value of the tritium β-decay. A relative uncertainty of 10 parts per trillion in the mass ratio would allow determining the Q value with a precision of 30 meV. This value is of relevance for the Karlsruhe Tritium Neutrino (KATRIN) collaboration, which is building a spectrometer to measure the mass of the electron antineutrino. In this contribution, we present the progress made in the past 2 years. We can, e.g., store, manipulate and detect single ions. To demonstrate the current accuracy, we measured the carbon-12 to oxygen-16 mass ratio with a relative uncertainty of 120 parts per trillion in early 2013. The improvements, current stat...
Improved measurement of the neutrino mass via β decay spectroscopy requires the development of ...
For decades people have tried to measure the rest masses of the neutrinos, but this quest has not ye...
The KATRIN experiment aims at measuring the effective electron antineutrino mass with a 0.2 eV (90% ...
The goal of the THe-Trap experiment is to measure the tritium/helium-3 mass ratio in order to deduce...
The precise determination of the 3H-3He mass ratio, and hence the tritium Q-value, is of relevance f...
Tritium-Helium-3-Trap (THe-Trap) is a Penning-trap setup dedicated to measure the<sup>3</sup>H to <s...
The precise determination of the 3He/3H mass ratio, and hence the tritium β-decay endpoint energy E ...
Twenty years after the discovery of neutrino oscillations established non-zero neutrino mass, the ab...
This thesis describes the recent improvements of the SMILETRAP Penning trap mass spectrometer and a ...
The determination of the neutrino mass is one of the major challenges in astroparticle physics today...
The KATRIN experiment is designed for a direct and model-independent determination of the effective ...
Improved measurement of the neutrino mass via β decay spectroscopy requires the development of ...
For decades people have tried to measure the rest masses of the neutrinos, but this quest has not ye...
The KATRIN experiment aims at measuring the effective electron antineutrino mass with a 0.2 eV (90% ...
The goal of the THe-Trap experiment is to measure the tritium/helium-3 mass ratio in order to deduce...
The precise determination of the 3H-3He mass ratio, and hence the tritium Q-value, is of relevance f...
Tritium-Helium-3-Trap (THe-Trap) is a Penning-trap setup dedicated to measure the<sup>3</sup>H to <s...
The precise determination of the 3He/3H mass ratio, and hence the tritium β-decay endpoint energy E ...
Twenty years after the discovery of neutrino oscillations established non-zero neutrino mass, the ab...
This thesis describes the recent improvements of the SMILETRAP Penning trap mass spectrometer and a ...
The determination of the neutrino mass is one of the major challenges in astroparticle physics today...
The KATRIN experiment is designed for a direct and model-independent determination of the effective ...
Improved measurement of the neutrino mass via β decay spectroscopy requires the development of ...
For decades people have tried to measure the rest masses of the neutrinos, but this quest has not ye...
The KATRIN experiment aims at measuring the effective electron antineutrino mass with a 0.2 eV (90% ...