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Electric and magnetic dipole strength in $^{66}$Zn

The dipole strength of the nuclide $^{66}$Zn was studied in photon-scattering experiments using bremsstrahlung produced with electron beams of energies of 7.5 and 13.4 MeV at the γELBE facility as well as using quasimonoenergetic and linearly polarized photon beams of 30 energies within the range of...

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Detalles Bibliográficos
Autores principales: Schwengner, R, Massarczyk, R, Scheck, M, Tornow, W, Battaglia, G, Beck, T, Bemmerer, D, Benouaret, N, Beyer, R, Butterling, M, Fiedler, F, Finch, S W, Fransen, C, Friman-Gayer, U, Frotscher, A, Gonzalez, R, Grieger, M, Hartmann, A, Hensel, T, Hoemann, E, Hoffmann, H, Janssens, R V F, Johnson, S, Jones, M D, Junghans, A R, Kelly, N, Kleemann, J, Krishichayan, Little, D R, Ludwig, F, Müller, S E, O'Donnell, D, Papst, O, Pirovano, E, Sinclair, J, Takács, M P, Turkat, S, Urlaß, S, Wagner, A, Werner, V, Wieland, O, Wilhelmy, J
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevC.103.024312
http://cds.cern.ch/record/2759169
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author Schwengner, R
Massarczyk, R
Scheck, M
Tornow, W
Battaglia, G
Beck, T
Bemmerer, D
Benouaret, N
Beyer, R
Butterling, M
Fiedler, F
Finch, S W
Fransen, C
Friman-Gayer, U
Frotscher, A
Gonzalez, R
Grieger, M
Hartmann, A
Hensel, T
Hoemann, E
Hoffmann, H
Janssens, R V F
Johnson, S
Jones, M D
Junghans, A R
Kelly, N
Kleemann, J
Krishichayan
Little, D R
Ludwig, F
Müller, S E
O'Donnell, D
Papst, O
Pirovano, E
Sinclair, J
Takács, M P
Turkat, S
Urlaß, S
Wagner, A
Werner, V
Wieland, O
Wilhelmy, J
author_facet Schwengner, R
Massarczyk, R
Scheck, M
Tornow, W
Battaglia, G
Beck, T
Bemmerer, D
Benouaret, N
Beyer, R
Butterling, M
Fiedler, F
Finch, S W
Fransen, C
Friman-Gayer, U
Frotscher, A
Gonzalez, R
Grieger, M
Hartmann, A
Hensel, T
Hoemann, E
Hoffmann, H
Janssens, R V F
Johnson, S
Jones, M D
Junghans, A R
Kelly, N
Kleemann, J
Krishichayan
Little, D R
Ludwig, F
Müller, S E
O'Donnell, D
Papst, O
Pirovano, E
Sinclair, J
Takács, M P
Turkat, S
Urlaß, S
Wagner, A
Werner, V
Wieland, O
Wilhelmy, J
author_sort Schwengner, R
collection CERN
description The dipole strength of the nuclide $^{66}$Zn was studied in photon-scattering experiments using bremsstrahlung produced with electron beams of energies of 7.5 and 13.4 MeV at the γELBE facility as well as using quasimonoenergetic and linearly polarized photon beams of 30 energies within the range of 4.3 to 9.9 MeV at the HIγS facility. A total of 128 J=1 states were identified, among them 9 with 1$^+$ and 86 with 1$^−$ assignments. The quasicontinuum of unresolved transitions was included in the analysis of the spectra and the intensities of branching transitions were estimated on the basis of simulations of statistical γ-ray cascades. As a result, the photoabsorption cross section up to the neutron-separation energy was determined and compared with predictions of the statistical reaction model. The experimental M1 strengths from resolved 1$^+$ states are compared with results of large-scale shell-model calculations.
id oai-inspirehep.net-1846879
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling oai-inspirehep.net-18468792021-03-26T22:19:10Zdoi:10.1103/PhysRevC.103.024312http://cds.cern.ch/record/2759169engSchwengner, RMassarczyk, RScheck, MTornow, WBattaglia, GBeck, TBemmerer, DBenouaret, NBeyer, RButterling, MFiedler, FFinch, S WFransen, CFriman-Gayer, UFrotscher, AGonzalez, RGrieger, MHartmann, AHensel, THoemann, EHoffmann, HJanssens, R V FJohnson, SJones, M DJunghans, A RKelly, NKleemann, JKrishichayanLittle, D RLudwig, FMüller, S EO'Donnell, DPapst, OPirovano, ESinclair, JTakács, M PTurkat, SUrlaß, SWagner, AWerner, VWieland, OWilhelmy, JElectric and magnetic dipole strength in $^{66}$ZnNuclear Physics - ExperimentThe dipole strength of the nuclide $^{66}$Zn was studied in photon-scattering experiments using bremsstrahlung produced with electron beams of energies of 7.5 and 13.4 MeV at the γELBE facility as well as using quasimonoenergetic and linearly polarized photon beams of 30 energies within the range of 4.3 to 9.9 MeV at the HIγS facility. A total of 128 J=1 states were identified, among them 9 with 1$^+$ and 86 with 1$^−$ assignments. The quasicontinuum of unresolved transitions was included in the analysis of the spectra and the intensities of branching transitions were estimated on the basis of simulations of statistical γ-ray cascades. As a result, the photoabsorption cross section up to the neutron-separation energy was determined and compared with predictions of the statistical reaction model. The experimental M1 strengths from resolved 1$^+$ states are compared with results of large-scale shell-model calculations.oai:inspirehep.net:18468792021
spellingShingle Nuclear Physics - Experiment
Schwengner, R
Massarczyk, R
Scheck, M
Tornow, W
Battaglia, G
Beck, T
Bemmerer, D
Benouaret, N
Beyer, R
Butterling, M
Fiedler, F
Finch, S W
Fransen, C
Friman-Gayer, U
Frotscher, A
Gonzalez, R
Grieger, M
Hartmann, A
Hensel, T
Hoemann, E
Hoffmann, H
Janssens, R V F
Johnson, S
Jones, M D
Junghans, A R
Kelly, N
Kleemann, J
Krishichayan
Little, D R
Ludwig, F
Müller, S E
O'Donnell, D
Papst, O
Pirovano, E
Sinclair, J
Takács, M P
Turkat, S
Urlaß, S
Wagner, A
Werner, V
Wieland, O
Wilhelmy, J
Electric and magnetic dipole strength in $^{66}$Zn
title Electric and magnetic dipole strength in $^{66}$Zn
title_full Electric and magnetic dipole strength in $^{66}$Zn
title_fullStr Electric and magnetic dipole strength in $^{66}$Zn
title_full_unstemmed Electric and magnetic dipole strength in $^{66}$Zn
title_short Electric and magnetic dipole strength in $^{66}$Zn
title_sort electric and magnetic dipole strength in $^{66}$zn
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1103/PhysRevC.103.024312
http://cds.cern.ch/record/2759169
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