We report on the status of the in-beam hyperfine-structure measurements on ground-state antihydrogen by ASACUSA and on recent results obtained in supporting measurements from hydrogen. The $\sigma_1$ and $\pi_1$ transitions can now be investigated, which is beneficial from both theoretical and experimental perspectives. We discuss systematic effects from resonance interference originating from the chosen field geometries in the interaction region, and how their impact can be managed by appropriate data-taking or design concepts.We report on the status of the in-beam hyperfine-structure measurements on ground-state antihydrogen by ASACUSA and on recent results obtained in supporting measurements from hydrogen. The σ1 and π1 transitions can n...
This paper discusses the first observation of stimulated magnetic resonance transitions between the ...
The ASACUSA collaboration aims to measure the ground state hyperfine splitting (GS-HFS) of antihydro...
The ASACUSA collaboration at CERN‐AD has recently submitted a proposal to measure the hyperfine spli...
The ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) collaboration opperates expe...
Antihydrogen, the lightest atom consisting purely of antimatter, is an ideal laboratory to study the...
The ground-state hyperfine splitting of antihydrogen promises one of the most sensitive tests of CPT...
The antihydrogen program of the ASACUSA collaboration at the antiproton decelerator of CERN focuses ...
The ASACUSA collaboration at the Antiproton Decelerator of CERN aims at a precise measurement of the...
International audienceThe observation of hyperfine structure in atomic hydrogen by Rabi and co-worke...
Die ASACUSA Kollaboration arbeitet an einer Messung der Hyperfeinstruktur von Antiwasserstoff im Gr...
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 matter - anti matter asymmetry observed in the universe today still lacks a quantitative explana...
One of the ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) collaboration's goals...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
This paper discusses the first observation of stimulated magnetic resonance transitions between the ...
The ASACUSA collaboration aims to measure the ground state hyperfine splitting (GS-HFS) of antihydro...
The ASACUSA collaboration at CERN‐AD has recently submitted a proposal to measure the hyperfine spli...
The ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) collaboration opperates expe...
Antihydrogen, the lightest atom consisting purely of antimatter, is an ideal laboratory to study the...
The ground-state hyperfine splitting of antihydrogen promises one of the most sensitive tests of CPT...
The antihydrogen program of the ASACUSA collaboration at the antiproton decelerator of CERN focuses ...
The ASACUSA collaboration at the Antiproton Decelerator of CERN aims at a precise measurement of the...
International audienceThe observation of hyperfine structure in atomic hydrogen by Rabi and co-worke...
Die ASACUSA Kollaboration arbeitet an einer Messung der Hyperfeinstruktur von Antiwasserstoff im Gr...
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 matter - anti matter asymmetry observed in the universe today still lacks a quantitative explana...
One of the ASACUSA (Atomic Spectroscopy And Collisions Using Slow Antiprotons) collaboration's goals...
The goal of the ASACUSA-CUSP collaboration at the Antiproton Decelerator of CERN is to measure the g...
This paper discusses the first observation of stimulated magnetic resonance transitions between the ...
The ASACUSA collaboration aims to measure the ground state hyperfine splitting (GS-HFS) of antihydro...
The ASACUSA collaboration at CERN‐AD has recently submitted a proposal to measure the hyperfine spli...