ATRAP's e/sup +/ cooling of p in a nested Penning trap has led to reports of cold H produced during such cooling by the ATHENA and ATRAP collaborations. To observe H, ATHENA uses coincident annihilation detection and ATRAP uses field ionization followed by p storage. Advantages of ATRAP's field ionization method include the complete absence of any background events, and the first way to measure which H states are produced. ATRAP enhances the H production rate by driving many cycles of e/sup +/ cooling in the nested trap, with more H counted in an hour than the sum of all the other antimatter atoms ever reported. The number of H counted per incident high energy p is also higher than ever observed. The first measured distribution of H states ...
The ATHENA apparatus that recently produced and detected the first cold antihydrogen atoms is descri...
The first observations of antihydrogen (H) atoms [1, 2] in 1995 opened a new way of testing the fund...
Cold antihydrogen atoms are a powerful tool to probe the validity of fundamental physics laws, and i...
Cold antihydrogen is produced when antiprotons are repeatedly driven into collisions with cold posit...
The ATHENA apparatus that recently produced and detected the first cold antihydrogen atoms is descri...
A background-free observation of cold antihydrogen atoms is made using field ionization followed by ...
A background-free observation of cold antihydrogen atoms is made using field ionization followed by ...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN's unique A...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN’s unique A...
%AD-2 %title\\ \\The Antihydrogen TRAP Collaboration (ATRAP) seeks to do precise laser spectroscopy ...
The production and observation of cold antihydrogen atoms have been recently reported by the ATHENA ...
The experimental production and detection of cold antihydrogen atoms reported by the ATHENA Collabor...
The experimental production and detection of cold antihydrogen atoms re-ported by the ATHENA Collabo...
The experimental production and detection of cold antihydrogen atoms reported by the ATHENA Collabor...
Observations of anti-hydrogen in small quantities have been reported at CERN and at FermiLab, but th...
The ATHENA apparatus that recently produced and detected the first cold antihydrogen atoms is descri...
The first observations of antihydrogen (H) atoms [1, 2] in 1995 opened a new way of testing the fund...
Cold antihydrogen atoms are a powerful tool to probe the validity of fundamental physics laws, and i...
Cold antihydrogen is produced when antiprotons are repeatedly driven into collisions with cold posit...
The ATHENA apparatus that recently produced and detected the first cold antihydrogen atoms is descri...
A background-free observation of cold antihydrogen atoms is made using field ionization followed by ...
A background-free observation of cold antihydrogen atoms is made using field ionization followed by ...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN's unique A...
The creation of cold antihydrogen by the ATHENA and ATRAP collaborations, working at CERN’s unique A...
%AD-2 %title\\ \\The Antihydrogen TRAP Collaboration (ATRAP) seeks to do precise laser spectroscopy ...
The production and observation of cold antihydrogen atoms have been recently reported by the ATHENA ...
The experimental production and detection of cold antihydrogen atoms reported by the ATHENA Collabor...
The experimental production and detection of cold antihydrogen atoms re-ported by the ATHENA Collabo...
The experimental production and detection of cold antihydrogen atoms reported by the ATHENA Collabor...
Observations of anti-hydrogen in small quantities have been reported at CERN and at FermiLab, but th...
The ATHENA apparatus that recently produced and detected the first cold antihydrogen atoms is descri...
The first observations of antihydrogen (H) atoms [1, 2] in 1995 opened a new way of testing the fund...
Cold antihydrogen atoms are a powerful tool to probe the validity of fundamental physics laws, and i...