Tan Joseph N, Brewer Samuel M, Guise Nicholas D
National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, Maryland 20899-8422, USA.
Rev Sci Instrum. 2012 Feb;83(2):023103. doi: 10.1063/1.3685246.
Penning traps are made extremely compact by embedding rare-earth permanent magnets in the electrode structure. Axially-oriented NdFeB magnets are used in unitary architectures that couple the electric and magnetic components into an integrated structure. We have constructed a two-magnet Penning trap with radial access to enable the use of laser or atomic beams, as well as the collection of light. An experimental apparatus equipped with ion optics is installed at the NIST electron beam ion trap (EBIT) facility, constrained to fit within 1 meter at the end of a horizontal beamline for transporting highly charged ions. Highly charged ions of neon and argon, extracted with initial energies up to 4000 eV per unit charge, are captured and stored to study the confinement properties of a one-magnet trap and a two-magnet trap. Design considerations and some test results are discussed.
通过将稀土永磁体嵌入电极结构中,潘宁阱得以制造得极其紧凑。轴向取向的钕铁硼磁体用于单一架构中,这种架构将电和磁组件耦合到一个集成结构中。我们构建了一个具有径向通道的双磁体潘宁阱,以实现激光或原子束的使用以及光的收集。一个配备离子光学器件的实验装置安装在美国国家标准与技术研究院(NIST)的电子束离子阱(EBIT)设施处,其尺寸被限制在水平束线末端的1米范围内,用于传输高电荷离子。初始能量高达每单位电荷4000电子伏特的氖和氩的高电荷离子被捕获并存储,以研究单磁体阱和双磁体阱的约束特性。文中讨论了设计考量和一些测试结果。