Published January 2011 | Version v1
Journal article

Search for trapped antihydrogen in ALPHA

  • 1. Swansea Univ., Dept. of Physics, Swansea (United Kingdom)
  • 2. Aarhus Univ., Dept. of Physics and Astronomy, Aarhus C (Denmark)
  • 3. Simon Fraser Univ., Dept. of Physics, Burnaby, BC (Canada)

Description

Antihydrogen spectroscopy promises precise tests of the symmetry of matter and antimatter, and can possibly offer new insights into the baryon asymmetry of the universe. Antihydrogen is, however, difficult to synthesize and is produced only in small quantities. The ALPHA collaboration is therefore pursuing a path towards trapping cold antihydrogen to permit the use of precision atomic physics tools to carry out comparisons of antihydrogen and hydrogen. ALPHA has addressed these challenges. Control of the plasma sizes has helped to lower the influence of the multipole field used in the neutral atom trap, and thus lowered the temperature of the created atoms. Finally, the first systematic attempt to identify trapped antihydrogen in our system is discussed. This discussion includes special techniques for fast release of the trapped antiatoms, as well as a silicon vertex detector to identify antiproton annihilations. The silicon detector reduces the background of annihilations, including background from antiprotons that can be mirror trapped in the fields of the neutral atom trap. A description of how to differentiate between these events and those resulting from trapped antihydrogen atoms is also included. (author)

Availability note (English)

Available from DOI: https://doi.org/10.1139/P10-085

Additional details

Identifiers

Publishing Information

Journal Title
Canadian Journal of Physics
Journal Volume
89
Journal Issue
1
Journal Page Range
p. 7-16
ISSN
0008-4204

Optional Information

Notes
19 refs., 9 figs.