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Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg
Gamow-Teller $\beta$ decay is forbidden if the number of nodes in the radial wave functions of the initial and final states is different. This $\Delta n=0$ requirement plays a major role in the $\beta$ decay of heavy neutron-rich nuclei, affecting the nucleosynthesis through the increased half-lives...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2019
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.physletb.2019.04.039 http://cds.cern.ch/record/2689800 |
_version_ | 1780963823494103040 |
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author | Berry, T A Podolyák, Zs Carroll, R J Lică, R Grawe, H Timofeyuk, N K Alexander, T Andreyev, A N Ansari, S Borge, M J G Creswell, J Fahlander, C Fraile, L M Fynbo, H O U Gelletly, W Gerst, R -B Górska, M Gredley, A Greenlees, P Harkness-Brennan, L J Huyse, M Judge, S M Judson, D S Konki, J Kurcewicz, J Kuti, I Lalkovski, S Lazarus, I Lund, M Madurga, M Mărginean, N Mărginean, R Marroquin, I Mihai, C Mihai, R E Nácher, E Nae, S Negret, A Niţă, C Page, R D Pascu, S Patel, Z Perea, A Pucknell, V Rahkila, P Rapisarda, E Regan, P H Rotaru, F Shand, C M Simpson, E C Sotty, Ch Stegemann, S Stora, T Tengblad, O Turturica, A Van Duppen, P Vedia, V Wadsworth, R Walker, P M Warr, N Wearing, F De Witte, H |
author_facet | Berry, T A Podolyák, Zs Carroll, R J Lică, R Grawe, H Timofeyuk, N K Alexander, T Andreyev, A N Ansari, S Borge, M J G Creswell, J Fahlander, C Fraile, L M Fynbo, H O U Gelletly, W Gerst, R -B Górska, M Gredley, A Greenlees, P Harkness-Brennan, L J Huyse, M Judge, S M Judson, D S Konki, J Kurcewicz, J Kuti, I Lalkovski, S Lazarus, I Lund, M Madurga, M Mărginean, N Mărginean, R Marroquin, I Mihai, C Mihai, R E Nácher, E Nae, S Negret, A Niţă, C Page, R D Pascu, S Patel, Z Perea, A Pucknell, V Rahkila, P Rapisarda, E Regan, P H Rotaru, F Shand, C M Simpson, E C Sotty, Ch Stegemann, S Stora, T Tengblad, O Turturica, A Van Duppen, P Vedia, V Wadsworth, R Walker, P M Warr, N Wearing, F De Witte, H |
author_sort | Berry, T A |
collection | CERN |
description | Gamow-Teller $\beta$ decay is forbidden if the number of nodes in the radial wave functions of the initial and final states is different. This $\Delta n=0$ requirement plays a major role in the $\beta$ decay of heavy neutron-rich nuclei, affecting the nucleosynthesis through the increased half-lives of nuclei on the astrophysical $r$-process pathway below both $Z=50$ (for $N>82$ ) and $Z=82$ (for $N>126$). The level of forbiddenness of the $\Delta n=1\ \nu 1g_{9/2} \rightarrow \pi0g_{7/2}$ transition has been investigated from the $\beta^-$ decay of the ground state of $^{207}$Hg into the single-proton-hole nucleus $^{207}$Tl in an experiment at the ISOLDE Decay Station. From statistical observational limits on possible $\gamma$-ray transitions depopulating the $\pi 0g_{7/2}^{−1}$ state in $^{207}$Tl, an upper limit of $3.9 \times 10^{−3}$% was obtained for the probability of this decay, corresponding to log$ft > 8.8$ within a 95% confidence limit. This is the most stringent test of the $\Delta n=0$ selection rule to date. |
id | oai-inspirehep.net-1733368 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2019 |
record_format | invenio |
spelling | oai-inspirehep.net-17333682022-08-10T12:23:37Zdoi:10.1016/j.physletb.2019.04.039http://cds.cern.ch/record/2689800engBerry, T APodolyák, ZsCarroll, R JLică, RGrawe, HTimofeyuk, N KAlexander, TAndreyev, A NAnsari, SBorge, M J GCreswell, JFahlander, CFraile, L MFynbo, H O UGelletly, WGerst, R -BGórska, MGredley, AGreenlees, PHarkness-Brennan, L JHuyse, MJudge, S MJudson, D SKonki, JKurcewicz, JKuti, ILalkovski, SLazarus, ILund, MMadurga, MMărginean, NMărginean, RMarroquin, IMihai, CMihai, R ENácher, ENae, SNegret, ANiţă, CPage, R DPascu, SPatel, ZPerea, APucknell, VRahkila, PRapisarda, ERegan, P HRotaru, FShand, C MSimpson, E CSotty, ChStegemann, SStora, TTengblad, OTurturica, AVan Duppen, PVedia, VWadsworth, RWalker, P MWarr, NWearing, FDe Witte, HInvestigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$HgNuclear Physics - ExperimentGamow-Teller $\beta$ decay is forbidden if the number of nodes in the radial wave functions of the initial and final states is different. This $\Delta n=0$ requirement plays a major role in the $\beta$ decay of heavy neutron-rich nuclei, affecting the nucleosynthesis through the increased half-lives of nuclei on the astrophysical $r$-process pathway below both $Z=50$ (for $N>82$ ) and $Z=82$ (for $N>126$). The level of forbiddenness of the $\Delta n=1\ \nu 1g_{9/2} \rightarrow \pi0g_{7/2}$ transition has been investigated from the $\beta^-$ decay of the ground state of $^{207}$Hg into the single-proton-hole nucleus $^{207}$Tl in an experiment at the ISOLDE Decay Station. From statistical observational limits on possible $\gamma$-ray transitions depopulating the $\pi 0g_{7/2}^{−1}$ state in $^{207}$Tl, an upper limit of $3.9 \times 10^{−3}$% was obtained for the probability of this decay, corresponding to log$ft > 8.8$ within a 95% confidence limit. This is the most stringent test of the $\Delta n=0$ selection rule to date.oai:inspirehep.net:17333682019 |
spellingShingle | Nuclear Physics - Experiment Berry, T A Podolyák, Zs Carroll, R J Lică, R Grawe, H Timofeyuk, N K Alexander, T Andreyev, A N Ansari, S Borge, M J G Creswell, J Fahlander, C Fraile, L M Fynbo, H O U Gelletly, W Gerst, R -B Górska, M Gredley, A Greenlees, P Harkness-Brennan, L J Huyse, M Judge, S M Judson, D S Konki, J Kurcewicz, J Kuti, I Lalkovski, S Lazarus, I Lund, M Madurga, M Mărginean, N Mărginean, R Marroquin, I Mihai, C Mihai, R E Nácher, E Nae, S Negret, A Niţă, C Page, R D Pascu, S Patel, Z Perea, A Pucknell, V Rahkila, P Rapisarda, E Regan, P H Rotaru, F Shand, C M Simpson, E C Sotty, Ch Stegemann, S Stora, T Tengblad, O Turturica, A Van Duppen, P Vedia, V Wadsworth, R Walker, P M Warr, N Wearing, F De Witte, H Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg |
title | Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg |
title_full | Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg |
title_fullStr | Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg |
title_full_unstemmed | Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg |
title_short | Investigation of the $\Delta n = 0$ selection rule in Gamow-Teller transitions: The $\beta$-decay of $^{207}$Hg |
title_sort | investigation of the $\delta n = 0$ selection rule in gamow-teller transitions: the $\beta$-decay of $^{207}$hg |
topic | Nuclear Physics - Experiment |
url | https://dx.doi.org/10.1016/j.physletb.2019.04.039 http://cds.cern.ch/record/2689800 |
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