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Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2

Mass measurements on $^{33, 34, 42, 43}$Ar were performed using the Penning trap mass spectrometer ISOLTRAP and a newly constructed linear Paul trap. This arrangement allowed for the first time to extend Penning trap mass measurements to nuclides with half-lives below one second ($^{33}$Ar: T$_{1/2}...

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Detalles Bibliográficos
Autores principales: Herfurth, F, Dilling, J, Kellerbauer, A G, Audi, G, Beck, D, Bollen, G, Henry, S, Kluge, H J, Lunney, M D, Moore, R B, Scheidenberger, C, Schwarz, S, Sikler, G, Szerypo, J
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.87.142501
http://cds.cern.ch/record/477401
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author Herfurth, F
Dilling, J
Kellerbauer, A G
Audi, G
Beck, D
Bollen, G
Henry, S
Kluge, H J
Lunney, M D
Moore, R B
Scheidenberger, C
Schwarz, S
Sikler, G
Szerypo, J
author_facet Herfurth, F
Dilling, J
Kellerbauer, A G
Audi, G
Beck, D
Bollen, G
Henry, S
Kluge, H J
Lunney, M D
Moore, R B
Scheidenberger, C
Schwarz, S
Sikler, G
Szerypo, J
author_sort Herfurth, F
collection CERN
description Mass measurements on $^{33, 34, 42, 43}$Ar were performed using the Penning trap mass spectrometer ISOLTRAP and a newly constructed linear Paul trap. This arrangement allowed for the first time to extend Penning trap mass measurements to nuclides with half-lives below one second ($^{33}$Ar: T$_{1/2}$ =174 ms). A mass accuracy of about $10^{-7}$ ($\delta m \approx 4$ keV) was achieved for all investigated nuclides. The isobaric multiplet mass equation (IMME) was checked for the $A=33$, $T=3/2$ quartet and found to be inconsistent with the generally accepted quadratic form.
id cern-477401
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4774012019-09-30T06:29:59Zdoi:10.1103/PhysRevLett.87.142501http://cds.cern.ch/record/477401engHerfurth, FDilling, JKellerbauer, A GAudi, GBeck, DBollen, GHenry, SKluge, H JLunney, M DMoore, R BScheidenberger, CSchwarz, SSikler, GSzerypo, JBreakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2Particle Physics - ExperimentMass measurements on $^{33, 34, 42, 43}$Ar were performed using the Penning trap mass spectrometer ISOLTRAP and a newly constructed linear Paul trap. This arrangement allowed for the first time to extend Penning trap mass measurements to nuclides with half-lives below one second ($^{33}$Ar: T$_{1/2}$ =174 ms). A mass accuracy of about $10^{-7}$ ($\delta m \approx 4$ keV) was achieved for all investigated nuclides. The isobaric multiplet mass equation (IMME) was checked for the $A=33$, $T=3/2$ quartet and found to be inconsistent with the generally accepted quadratic form.CERN-EP-2000-142GSI-2000-48oai:cds.cern.ch:4774012000-11-14
spellingShingle Particle Physics - Experiment
Herfurth, F
Dilling, J
Kellerbauer, A G
Audi, G
Beck, D
Bollen, G
Henry, S
Kluge, H J
Lunney, M D
Moore, R B
Scheidenberger, C
Schwarz, S
Sikler, G
Szerypo, J
Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2
title Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2
title_full Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2
title_fullStr Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2
title_full_unstemmed Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2
title_short Breakdown of the Isobaric Multiplet Mass Equation (IMME) at A=33, T=3/2
title_sort breakdown of the isobaric multiplet mass equation (imme) at a=33, t=3/2
topic Particle Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevLett.87.142501
http://cds.cern.ch/record/477401
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