利用ATHENA产生冷反氢用于基础研究
高能物理 - 实验
2016-08-16 v1
摘要
自2000年7月CERN反质子减速器开始运行以来,反质子的成功减速、存储和操控已在反物质产生方面取得了显著进展。ATHENA合作组于2002年首次创造并探测到冷反氢,如今我们可以产生足够多的反原子来研究其性质以及决定其产生速率的参数。
引用
@article{arxiv.hep-ex/0406074,
title = {Production of Cold Antihydrogen with ATHENA for Fundamental Studies},
author = {ATHENA Collaboration and A. Kellerbauer and M. Amoretti and C. Amsler and G. Bonomi and P. D. Bowe and C. Canali and C. Carraro and C. L. Cesar and M. Charlton and M. Doser and A. Fontana and M. C. Fujiwara and R. Funakoshi and P. Genova and J. S. Hangst and R. S. Hayano and I. Johnson and L. V. Jørgensen and V. Lagomarsino and R. Landua and E. Lodi Rizzini and M. Macrí and N. Madsen and G. Manuzio and D. Mitchard and P. Montagna and H. Pruys and C. Regenfus and A. Rotondi and G. Testera and A. Variola and L. Venturelli and D. P. van der Werf and Y. Yamazaki and N. Zurlo},
journal= {arXiv preprint arXiv:hep-ex/0406074},
year = {2016}
}
备注
Proceedings of the XXXIXth Rencontres de Moriond, 2004, Electroweak Interactions and Unified Theories, Ed. J. Tran Thanh Van. 8 pages, 7 figures, 1 table