The ASACUSA collaboration has developed a detector consisting of a large size BGO crystal to detect an atomic antihydrogen beam, and performed the direct detection of antihydrogen atoms. Energy spectra from antihydrogen annihilation on the BGO crystal are discussed in comparison to simulation results from the GEANT4 toolkit. Background mainly originating from cosmic rays were strongly suppressed by analyzing the energy deposited in the BGO and requiring a multiplicity of charged pions. Thus antihydrogen events were identified
A main scientific goal of the AEgIS experiment is the direct measurement of the Earth’s local gravit...
An observation of relativistic antihydrogen atoms is reported in this dissertation. Experiment 862 a...
The ASACUSA collaboration aims at measuring the ground state hyperfine splitting of antihydrogen for...
The ASACUSA collaboration has developed a detector consisting of a large size BGO crystal to detect ...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...
An antihydrogen detector consisting of a thin BGO disk and a surrounding plastic scintillator hodosc...
Producing a beam of antihydrogen, as published by the ASACUSA-Hbar collaboration[1], imposes some bi...
The matter-antimatter asymmetry observed in the universe today still lacks a quantitative explanatio...
The ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) collaboration at the Antipro...
In 2002, the ATHENA collaboration reported the creation and detection of cold (~15 K) antihydrogen a...
AbstractThe matter-antimatter asymmetry observed in the universe today still lacks a quantitative ex...
We present the commissioning of the Fast Annihilation Cryogenic Tracker detector (FACT), installed a...
A main scientific goal of the AEgIS experiment is the direct measurement of the Earth’s local gravit...
An observation of relativistic antihydrogen atoms is reported in this dissertation. Experiment 862 a...
The ASACUSA collaboration aims at measuring the ground state hyperfine splitting of antihydrogen for...
The ASACUSA collaboration has developed a detector consisting of a large size BGO crystal to detect ...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...
An antihydrogen detector consisting of a thin BGO disk and a surrounding plastic scintillator hodosc...
Producing a beam of antihydrogen, as published by the ASACUSA-Hbar collaboration[1], imposes some bi...
The matter-antimatter asymmetry observed in the universe today still lacks a quantitative explanatio...
The ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) collaboration at the Antipro...
In 2002, the ATHENA collaboration reported the creation and detection of cold (~15 K) antihydrogen a...
AbstractThe matter-antimatter asymmetry observed in the universe today still lacks a quantitative ex...
We present the commissioning of the Fast Annihilation Cryogenic Tracker detector (FACT), installed a...
A main scientific goal of the AEgIS experiment is the direct measurement of the Earth’s local gravit...
An observation of relativistic antihydrogen atoms is reported in this dissertation. Experiment 862 a...
The ASACUSA collaboration aims at measuring the ground state hyperfine splitting of antihydrogen for...