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Compression of trapped positrons in a single particle regime by a rotating electric field

机译:旋转电场在单个粒子状态下对捕获的正电子的压缩

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摘要

Positrons confined in a cylindrical Penning trap are compressed radially by applying a rotating electric field. Previous experiments were conducted with large numbers of positrons in the plasma state. Compression of small numbers of positrons in the single particle regime is reported for the first time. For low values of applied rf amplitude, the compression occurs in a narrow band of frequencies centered on the axial bounce frequency. For larger amplitudes, the compression extends to a broad range of frequencies below the bounce frequency. Under certain conditions, very rapid compression can be obtained and central density doubling times of only a few milliseconds have been observed. Possible models for the effect are discussed. Potential application to the production of brightness enhanced positron beams is described. (C) 2008 American Institute of Physics.
机译:限制在圆柱形Penning阱中的正电子通过施加旋转电场而受到径向压缩。先前的实验是用大量处于等离子体状态的正电子进行的。首次报道了在单粒子状态下少量正电子的压缩。对于较低的rf振幅值,压缩发生在以轴向跳动频率为中心的窄频带中。对于较大的振幅,压缩会扩展到低于跳动频率的较宽频率范围。在某些条件下,可以获得非常快速的压缩,并且观察到的中心密度加倍时间仅为几毫秒。讨论了可能的效果模型。描述了在产生亮度增强的正电子束中的潜在应用。 (C)2008美国物理研究所。

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