Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive test of the Charge-Parity-Time theorem and matter-antimatter equivalence. The clearest path towards realising this goal is to hold a sample of antihydrogen in an atomic trap for interrogation by electromagnetic radiation. Achieving this poses a huge experimental challenge, as state-of-the-art magnetic-minimum atom traps have well depths of only ∼1 T (∼0.5 K for ground state antihydrogen atoms). The atoms annihilate on contact with matter and must be ‘born’ inside the magnetic trap with low kinetic energies. At the ALPHA experiment, antihydrogen atoms are produced from antiprotons and positrons stored in the form of non-ne...
Antihydrogen atoms are confined in an Ioffe trap for 15 to 1000 seconds -- long enough to ensure tha...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Antihydrogen, the bound state of an antiproton and a positron, has been produced at low energies at ...
Antimatter was first predicted in 1931, by Dirac. Work with highenergy antiparticles is now commonpl...
Antihydrogen, the simplest pure-antimatter atomic system, holds the promise of direct tests of matte...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Abstract: Antihydrogen spectroscopy promises precise tests of the symmetry of matter and antimatter,...
Atoms made of a particle and an antiparticle are unstable, usually surviving less than a microsecond...
The asymmetry between matter and antimatter in the universe and the incompatibility be- tween the St...
In 2010 the ALPHA collaboration succeeded in trapping antihydrogen atoms for the first time.[i] ...
Antihydrogen atoms are confined in an Ioffe trap for 15 to 1000 seconds -- long enough to ensure tha...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Precision spectroscopic comparison of hydrogen and antihydrogen holds the promise of a sensitive tes...
Antihydrogen, the bound state of an antiproton and a positron, has been produced at low energies at ...
Antimatter was first predicted in 1931, by Dirac. Work with highenergy antiparticles is now commonpl...
Antihydrogen, the simplest pure-antimatter atomic system, holds the promise of direct tests of matte...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Abstract: Antihydrogen spectroscopy promises precise tests of the symmetry of matter and antimatter,...
Atoms made of a particle and an antiparticle are unstable, usually surviving less than a microsecond...
The asymmetry between matter and antimatter in the universe and the incompatibility be- tween the St...
In 2010 the ALPHA collaboration succeeded in trapping antihydrogen atoms for the first time.[i] ...
Antihydrogen atoms are confined in an Ioffe trap for 15 to 1000 seconds -- long enough to ensure tha...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...
Antihydrogen, a positron bound to an antiproton, is the simplest anti-atom. Its structure and proper...