首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Large numbers of cold positronium atoms created in laser-selected Rydberg states using resonant charge exchange
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Large numbers of cold positronium atoms created in laser-selected Rydberg states using resonant charge exchange

机译:使用共振电荷交换,在激光选择的里德堡态下产生大量的冷正电子原子

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摘要

Lasers are used to control the production of highly excited positronium atoms (Ps*). The laser light excites Cs atoms to Rydberg states that have a large cross section for resonant charge-exchange collisions with cold trapped positrons. For each trial with 30 million trapped positrons, more than 700 000 of the created Ps* have trajectories near the axis of the apparatus, and are detected using Stark ionization. This number of Ps* is 500 times higher than realized in an earlier proof-of-principle demonstration (2004 Phys. Lett. B 597 257). A second charge exchange of these near-axis Ps* with trapped antiprotons could be used to produce cold antihydrogen, and this antihydrogen production is expected to be increased by a similar factor.
机译:激光用于控制高激发正电子原子(Ps *)的产生。激光将Cs原子激发到具有大横截面的Rydberg态,以与冷俘获的正电子发生共振电荷交换碰撞。对于具有3000万个被俘获的正电子的每个试验,超过70万个生成的Ps *的轨迹接近设备的轴,并使用Stark电离进行检测。 Ps *的数量比以前的原理证明演示(2004 Phys。Lett。B 597 257)实现的高500倍。这些近轴的Ps *与捕获的反质子的第二次电荷交换可用于产生冷的抗氢,并且这种抗氢的产生预计会增加类似的倍数。

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