Trap-integrated fluorescence detection with silicon photomultipliers for sympathetic laser cooling in a cryogenic Penning trap

We present a fluorescence-detection system for laser-cooled 9Be+ ions based on silicon photomultipliers (SiPMs) operated at 4 K and integrated into our cryogenic 1.9 T multi-Penning-trap system. Our approach enables fluorescence detection in a hermetically sealed cryogenic Penning-trap chamber with...

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Veröffentlicht in:Review of scientific instruments 2023-12, Vol.94 (12)
Hauptverfasser: Wiesinger, M., Stuhlmann, F., Bohman, M., Micke, P., Will, C., Yildiz, H., Abbass, F., Arndt, B. P., Devlin, J. A., Erlewein, S., Fleck, M., Jäger, J. I., Latacz, B. M., Schweitzer, D., Umbrazunas, G., Wursten, E., Blaum, K., Matsuda, Y., Mooser, A., Quint, W., Soter, A., Walz, J., Smorra, C., Ulmer, S.
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Sprache:eng
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Zusammenfassung:We present a fluorescence-detection system for laser-cooled 9Be+ ions based on silicon photomultipliers (SiPMs) operated at 4 K and integrated into our cryogenic 1.9 T multi-Penning-trap system. Our approach enables fluorescence detection in a hermetically sealed cryogenic Penning-trap chamber with limited optical access, where state-of-the-art detection using a telescope and photomultipliers at room temperature would be extremely difficult. We characterize the properties of the SiPM in a cryocooler at 4 K, where we measure a dark count rate below 1 s−1 and a detection efficiency of 2.5(3)%. We further discuss the design of our cryogenic fluorescence-detection trap and analyze the performance of our detection system by fluorescence spectroscopy of 9Be+ ion clouds during several runs of our sympathetic laser-cooling experiment.
ISSN:0034-6748
1089-7623
DOI:10.1063/5.0170629