The goal of the ALPHA collaboration at CERN is to test CPT conservation by comparing the 1S–2S transitions of hydrogen and antihydrogen. To reach the ultimate accuracy of 1 part in 1018, the (anti)atoms must be trapped. Using current technology, only magnetic minimum traps can confine (anti)hydrogen. In this paper, the design of the ALPHA antihydrogen trap and the results of measurements on a prototype system will be presented. The trap depth of the final system will be 1.16 T, corresponding to a temperature of 0.78K for ground state antihydrogen
The ALPHA project at the CERN AD is testing fundamental symmetries between matter and antimatter usi...
ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry wit...
ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry wit...
The goal of the ALPHA collaboration at CERN is to test CPT conservation by comparing the 1S–2S trans...
The ALPHA collaboration, based at CERN, has recently succeeded in confining cold antihydrogen atoms ...
Abstract. The ALPHA experiment aims to trap antihydrogen as the next crucial step towards a precise ...
ALPHA is an international project that has recently begun experimentation at CERN’s Antiproton Decel...
The ALPHA experiment aims to trap antihydrogen as the next crucial step towards a precise CPT test, ...
Substantial progress has been made in the last few years in the nascent field of antihydrogen physic...
Antihydrogen, the bound state of an antiproton and a positron, has been produced at low energies at ...
Antihydrogen, the simplest pure-antimatter atomic system, holds the promise of direct tests of matte...
This thesis details the development and commissioning of the ALPHA antihydrogen trapping apparatus. ...
Conditions required for magnetic confinement of antihydrogen atoms are briefly described. Then, seve...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
ALPHA is an international project that has recently begun experimentation at CERN's Antiproton Decel...
The ALPHA project at the CERN AD is testing fundamental symmetries between matter and antimatter usi...
ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry wit...
ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry wit...
The goal of the ALPHA collaboration at CERN is to test CPT conservation by comparing the 1S–2S trans...
The ALPHA collaboration, based at CERN, has recently succeeded in confining cold antihydrogen atoms ...
Abstract. The ALPHA experiment aims to trap antihydrogen as the next crucial step towards a precise ...
ALPHA is an international project that has recently begun experimentation at CERN’s Antiproton Decel...
The ALPHA experiment aims to trap antihydrogen as the next crucial step towards a precise CPT test, ...
Substantial progress has been made in the last few years in the nascent field of antihydrogen physic...
Antihydrogen, the bound state of an antiproton and a positron, has been produced at low energies at ...
Antihydrogen, the simplest pure-antimatter atomic system, holds the promise of direct tests of matte...
This thesis details the development and commissioning of the ALPHA antihydrogen trapping apparatus. ...
Conditions required for magnetic confinement of antihydrogen atoms are briefly described. Then, seve...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
ALPHA is an international project that has recently begun experimentation at CERN's Antiproton Decel...
The ALPHA project at the CERN AD is testing fundamental symmetries between matter and antimatter usi...
ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry wit...
ALPHA is an experiment at CERN, whose ultimate goal is to perform a precise test of CPT symmetry wit...