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Abstract
Nuclear collisions recreate conditions in the universe microseconds after the Big Bang. Only a very small fraction of the emitted fragments are light nuclei, but these states are of fundamental interest. We report the observation of antihypertritons-comprising an antiproton, an antineutron, and an antilambda hyperon-produced by colliding gold nuclei at high energy. Our analysis yields 70 +/- 17 antihypertritons (3/Lambda(H) over bar) and 157 +/- 30 hypertritons (H-3(Lambda)). The measured yields of H-3(Lambda) (3/Lambda(H) over bar) and He-3 ((3)(He) over bar) are similar, suggesting an equilibrium in coordinate and momentum space populations of up, down, and strange quarks and antiquarks, unlike the pattern observed at lower collision energies. The production and properties of antinuclei, and of nuclei containing strange quarks, have implications spanning nuclear and particle physics, astrophysics, and cosmology.
Original language | English |
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Pages (from-to) | 58-62 |
Number of pages | 5 |
Journal | Science |
Volume | 328 |
Issue number | 5974 |
DOIs | |
Publication status | Published - 1 Apr 2010 |
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Dive into the research topics of 'Observation of an Antimatter Hypernucleus'. Together they form a unique fingerprint.Projects
- 1 Finished
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Ultra-relativitic Heavy Ion Collisions - Application for Bridging Support
Jones, P. (Principal Investigator)
SCIENCE & TECHNOLOGY FACILITIES COUNCIL
1/03/08 → 31/05/10
Project: Research Councils