Antihydrogen formation by autoresonant excitation of antiproton plasmas

被引:0
|
作者
William Alan Bertsche
G. B. Andresen
M. D. Ashkezari
M. Baquero-Ruiz
P. D. Bowe
P. T. Carpenter
E. Butler
C. L. Cesar
S. F. Chapman
M. Charlton
S. Eriksson
J. Fajans
T. Friesen
M. C. Fujiwara
D. R. Gill
A. Gutierrez
J. S. Hangst
W. N. Hardy
R. S. Hayano
M. E. Hayden
A. J. Humphries
J. L. Hurt
R. Hydomako
S. Jonsell
L. Kurchaninov
N. Madsen
S. Menary
P. Nolan
K. Olchanski
A. Olin
A. Povilus
P. Pusa
F. Robicheaux
E. Sarid
D. M. Silveira
C. So
J. W. Storey
R. I. Thompson
D. P. van der Werf
J. S. Wurtele
Y. Yamazaki
机构
[1] Swansea University,Department of Physics
[2] Aarhus University,Department of Physics and Astronomy
[3] Simon Fraser University,Department of Physics
[4] University of California,Department of Physics
[5] Auburn University,Department of Physics
[6] CERN,Physics Department
[7] Universidade Federal do Rio de Janeiro,Instituto de Física
[8] University of Calgary,Department of Physics and Astronomy
[9] TRIUMF,Department of Physics and Astronomy
[10] University of British Columbia,Department of Physics
[11] University of Tokyo,Department of Physics
[12] Stockholm University,Department of Physics and Astronomy
[13] York University,Department of Physics
[14] University of Liverpool,Department of Physics
[15] NRCN-Nuclear Research Center Negev,Atomic Physics Laboratory
[16] RIKEN Advanced Science Institute,Graduate School of Arts and Sciences
[17] Lawrence Berkeley National Laboratory,undefined
[18] University of Tokyo,undefined
来源
Hyperfine Interactions | 2012年 / 212卷
关键词
Antihydrogen; Plasma; Nonlinear; Dynamics;
D O I
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中图分类号
学科分类号
摘要
In efforts to trap antihydrogen, a key problem is the vast disparity between the neutral trap energy scale (\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$\sim\!50\,\upmu\mathrm{eV}$\end{document}), and the energy scales associated with plasma confinement and space charge (~1 eV). In order to merge charged particle species for direct recombination, the larger energy scale must be overcome in a manner that minimizes the initial antihydrogen kinetic energy. This issue motivated the development of a novel injection technique utilizing the inherent nonlinear nature of particle oscillations in our traps. We demonstrated controllable excitation of the center-of-mass longitudinal motion of a thermal antiproton plasma using a swept-frequency autoresonant drive. When the plasma is cold, dense and highly collective in nature, we observe that the entire system behaves as a single-particle nonlinear oscillator, as predicted by a recent theory. In contrast, only a fraction of the antiprotons in a warm or tenuous plasma can be similarly excited. Antihydrogen was produced and trapped by using this technique to drive antiprotons into a positron plasma, thereby initiating atomic recombination. The nature of this injection overcomes some of the difficulties associated with matching the energies of the charged species used to produce antihydrogen.
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页码:61 / 67
页数:6
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