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Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons

We developed highly-sensitive image-current detection systems based on superconducting toroidal coils and ultra-low noise amplifiers for non-destructive measurements of the axial frequencies (550$\sim$800$\,$kHz) of single antiprotons stored in a cryogenic multi-Penning-trap system. The unloaded sup...

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Autores principales: Nagahama, H., Schneider, G., Mooser, A., Smorra, C., Sellner, S., Harrington, J., Higuchi, T., Borchert, M., Tanaka, T., Besirli, M., Blaum, K., Matsuda, Y., Ospelkaus, C., Quint, W., Walz, J., Yamazaki, Y., Ulmer, S.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1063/1.4967493
http://cds.cern.ch/record/2242535
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author Nagahama, H.
Schneider, G.
Mooser, A.
Smorra, C.
Sellner, S.
Harrington, J.
Higuchi, T.
Borchert, M.
Tanaka, T.
Besirli, M.
Blaum, K.
Matsuda, Y.
Ospelkaus, C.
Quint, W.
Walz, J.
Yamazaki, Y.
Ulmer, S.
author_facet Nagahama, H.
Schneider, G.
Mooser, A.
Smorra, C.
Sellner, S.
Harrington, J.
Higuchi, T.
Borchert, M.
Tanaka, T.
Besirli, M.
Blaum, K.
Matsuda, Y.
Ospelkaus, C.
Quint, W.
Walz, J.
Yamazaki, Y.
Ulmer, S.
author_sort Nagahama, H.
collection CERN
description We developed highly-sensitive image-current detection systems based on superconducting toroidal coils and ultra-low noise amplifiers for non-destructive measurements of the axial frequencies (550$\sim$800$\,$kHz) of single antiprotons stored in a cryogenic multi-Penning-trap system. The unloaded superconducting tuned circuits show quality factors of up to 500$\,$000, which corresponds to a factor of 10 improvement compared to our previously used solenoidal designs. Connected to ultra-low noise amplifiers and the trap system, signal-to-noise-ratios of 30$\,$dB at quality factors of > 20$\,$000 are achieved. In addition, we have developed a superconducting switch which allows continuous tuning of the detector's quality factor, and to sensitively tune the particle-detector interaction. This allowed us to improve frequency resolution at constant averaging time, which is crucial for single antiproton spin-transition spectroscopy experiments, as well as improved measurements of the proton-to-antiproton charge-to-mass ratio.
id cern-2242535
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-22425352020-11-24T14:02:23Zdoi:10.1063/1.4967493http://cds.cern.ch/record/2242535engNagahama, H.Schneider, G.Mooser, A.Smorra, C.Sellner, S.Harrington, J.Higuchi, T.Borchert, M.Tanaka, T.Besirli, M.Blaum, K.Matsuda, Y.Ospelkaus, C.Quint, W.Walz, J.Yamazaki, Y.Ulmer, S.Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotonsphysics.ins-detDetectors and Experimental TechniquesWe developed highly-sensitive image-current detection systems based on superconducting toroidal coils and ultra-low noise amplifiers for non-destructive measurements of the axial frequencies (550$\sim$800$\,$kHz) of single antiprotons stored in a cryogenic multi-Penning-trap system. The unloaded superconducting tuned circuits show quality factors of up to 500$\,$000, which corresponds to a factor of 10 improvement compared to our previously used solenoidal designs. Connected to ultra-low noise amplifiers and the trap system, signal-to-noise-ratios of 30$\,$dB at quality factors of > 20$\,$000 are achieved. In addition, we have developed a superconducting switch which allows continuous tuning of the detector's quality factor, and to sensitively tune the particle-detector interaction. This allowed us to improve frequency resolution at constant averaging time, which is crucial for single antiproton spin-transition spectroscopy experiments, as well as improved measurements of the proton-to-antiproton charge-to-mass ratio.We developed highly sensitive image-current detection systems based on superconducting toroidal coils and ultra-low noise amplifiers for non-destructive measurements of the axial frequencies (550–800 kHz) of single antiprotons stored in a cryogenic multi-Penning-trap system. The unloaded superconducting tuned circuits show quality factors of up to 500 000, which corresponds to a factor of 10 improvement compared to our previously used solenoidal designs. Connected to ultra-low noise amplifiers and the trap system, signal-to-noise-ratios of 30 dB at quality factors of >20 000 are achieved. In addition, we have developed a superconducting switch which allows continuous tuning of the detector’s quality factor and to sensitively tune the particle-detector interaction. This allowed us to improve frequency resolution at constant averaging time, which is crucial for single antiproton spin-transition spectroscopy experiments, as well as improved measurements of the proton-to-antiproton charge-to-mass ratio.arXiv:1612.08481oai:cds.cern.ch:22425352016-12-26
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Nagahama, H.
Schneider, G.
Mooser, A.
Smorra, C.
Sellner, S.
Harrington, J.
Higuchi, T.
Borchert, M.
Tanaka, T.
Besirli, M.
Blaum, K.
Matsuda, Y.
Ospelkaus, C.
Quint, W.
Walz, J.
Yamazaki, Y.
Ulmer, S.
Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons
title Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons
title_full Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons
title_fullStr Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons
title_full_unstemmed Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons
title_short Highly sensitive superconducting circuits at ∼700 kHz with tunable quality factors for image-current detection of single trapped antiprotons
title_sort highly sensitive superconducting circuits at ∼700 khz with tunable quality factors for image-current detection of single trapped antiprotons
topic physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1063/1.4967493
http://cds.cern.ch/record/2242535
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