2007Unpublished venueRequires access

Radiofrequency Resonance Detection of Trapped ~(199)Hg~+ in A Paul Trap

LI Jiao-mei

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Abstract

As one of the most important parts of the Paul trap, the radiofrequency (RF) source has great influences on the performance of the ion trap. To improve the stability and the depth of the pseudo-potential well of the ion trap, two sets of RF sources and the corresponding detection circuits were designed and implemented in a Paul trap. With the implementation, absorbed signals of 199Hg+ and N+2 were detected from trapped ions.

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What this paper is about

As one of the most important parts of the Paul trap, the radiofrequency (RF) source has great influences on the performance of the ion trap. To improve the stability and the depth of the pseudo-potential well of the ion trap, two sets of RF sources and the corresponding detection circuits were designed and implemented in a Paul trap. With the implementation, absorbed signals of 199Hg+ and N+2 were detected from trapped ions.

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Available abstract

As one of the most important parts of the Paul trap, the radiofrequency (RF) source has great influences on the performance of the ion trap. To improve the stability and the depth of the pseudo-potential well of the ion trap, two sets of RF sources and the corresponding detection circuits were designed and implemented in a Paul trap. With the implementation, absorbed signals of 199Hg+ and N+2 were detected from trapped ions.

Key concepts: Trap (plumbing), Ion trap, Ion, Atomic physics, Resonance (particle physics), Chemistry, Radio frequency, Optoelectronics

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