The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the ground-state hyperfine splitting of antihydrogen using an atomic spectroscopy beamline. A milestone was achieved in 2012 through the detection of 80 antihydrogen atoms 2.7 meters away from their production region. This was the first observation of "cold" antihydrogen atoms in a magnetic field free region. In parallel to the progress on the antihydrogen production, the spectroscopy beamline was tested with a source of hydrogen. This led to a measurement at a relative precision of 2.7x 10^(-9) which constitues the most precise measurement of the hydrogen hyperfine splitting in a beam. Further measurements with an upgraded hydrogen apparatus are ...
The ASACUSA CUSP collaboration at the Antiproton Decelerator (AD) of CERN is planning to measure the...
The ASACUSA collaboration at the Antiproton Decelerator of CERN is planning to measure the ground-st...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
The ASACUSA collaboration at the Antiproton Decelerator of CERN aims at a precise measurement of the...
The matter - anti matter asymmetry observed in the universe today still lacks a quantitative explana...
Antihydrogen, the lightest atom consisting purely of antimatter, is an ideal laboratory to study the...
The ASACUSA collaboration aims to measure the ground state hyperfine splitting (GS-HFS) of antihydro...
The antihydrogen program of the ASACUSA collaboration at the antiproton decelerator of CERN focuses ...
The ground-state hyperfine splitting of antihydrogen promises one of the most sensitive tests of CPT...
The ASACUSA collaboration at CERN‐AD has recently submitted a proposal to measure the hyperfine spli...
The ASACUSA CUSP collaboration at the Antiproton Decelerator (AD) of CERN is planning to measure the...
The ASACUSA collaboration at the Antiproton Decelerator of CERN is planning to measure the ground-st...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
The ASACUSA collaboration at the Antiproton Decelerator of CERN aims at a precise measurement of the...
The matter - anti matter asymmetry observed in the universe today still lacks a quantitative explana...
Antihydrogen, the lightest atom consisting purely of antimatter, is an ideal laboratory to study the...
The ASACUSA collaboration aims to measure the ground state hyperfine splitting (GS-HFS) of antihydro...
The antihydrogen program of the ASACUSA collaboration at the antiproton decelerator of CERN focuses ...
The ground-state hyperfine splitting of antihydrogen promises one of the most sensitive tests of CPT...
The ASACUSA collaboration at CERN‐AD has recently submitted a proposal to measure the hyperfine spli...
The ASACUSA CUSP collaboration at the Antiproton Decelerator (AD) of CERN is planning to measure the...
The ASACUSA collaboration at the Antiproton Decelerator of CERN is planning to measure the ground-st...
The ASACUSA Collaboration at CERNs Antiproton Decelerator aims to measure the ground state hyperfine...