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High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium

This talk gives an overview of the recent results on the precision spectroscopy of antiprotonic helium which was performed by the ASACUSA collaboration at the Antiproton Decelerator of CERN. The laser spectroscopy of energy levels of the antiproton has reached a relative accuracy of $\sim 10^{-7}$,...

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Autor principal: Widmann, E.
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/589150
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author Widmann, E.
author_facet Widmann, E.
author_sort Widmann, E.
collection CERN
description This talk gives an overview of the recent results on the precision spectroscopy of antiprotonic helium which was performed by the ASACUSA collaboration at the Antiproton Decelerator of CERN. The laser spectroscopy of energy levels of the antiproton has reached a relative accuracy of $\sim 10^{-7}$, and by comparing the experimental value for the transition wavelengths with theoretical calculations, a CPT test on the equality of proton and antiproton charge and mass of $<6\times10^{-8}$ has been obtained. In a recent experiment, the hyperfine structure of the $(n,l)=(37,35)$ state of antiprotonic helium has been measured for the first time with an accuracy of $3 \times 10^{-5}$.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
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spelling cern-5891502023-03-14T18:15:23Zhttp://cds.cern.ch/record/589150engWidmann, E.High Precision Laser and Microwave Spectroscopy of Antiprotonic HeliumNuclear Physics - ExperimentThis talk gives an overview of the recent results on the precision spectroscopy of antiprotonic helium which was performed by the ASACUSA collaboration at the Antiproton Decelerator of CERN. The laser spectroscopy of energy levels of the antiproton has reached a relative accuracy of $\sim 10^{-7}$, and by comparing the experimental value for the transition wavelengths with theoretical calculations, a CPT test on the equality of proton and antiproton charge and mass of $<6\times10^{-8}$ has been obtained. In a recent experiment, the hyperfine structure of the $(n,l)=(37,35)$ state of antiprotonic helium has been measured for the first time with an accuracy of $3 \times 10^{-5}$.This talk gives an overview of the recent results on the precision spectroscopy of antiprotonic helium which was performed by the ASACUSA collaboration at the Antiproton Decelerator of CERN. The laser spectroscopy of energy levels of the antiproton has reached a relative accuracy of $\sim 10^{-7}$, and by comparing the experimental value for the transition wavelengths with theoretical calculations, a CPT test on the equality of proton and antiproton charge and mass of $<6\times10^{-8}$ has been obtained. In a recent experiment, the hyperfine structure of the $(n,l)=(37,35)$ state of antiprotonic helium has been measured for the first time with an accuracy of $3 \times 10^{-5}$.nucl-ex/0210038oai:cds.cern.ch:5891502002-10-29
spellingShingle Nuclear Physics - Experiment
Widmann, E.
High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium
title High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium
title_full High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium
title_fullStr High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium
title_full_unstemmed High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium
title_short High Precision Laser and Microwave Spectroscopy of Antiprotonic Helium
title_sort high precision laser and microwave spectroscopy of antiprotonic helium
topic Nuclear Physics - Experiment
url http://cds.cern.ch/record/589150
work_keys_str_mv AT widmanne highprecisionlaserandmicrowavespectroscopyofantiprotonichelium