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Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co

The observation of a weak proton-emission branch in the decay of the 3174-keV (53m)Co isomeric state marked the discovery of proton radioactivity in atomic nuclei in 1970. Here we show, based on the partial half-lives and the decay energies of the possible proton-emission branches, that the exceptio...

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Autores principales: Sarmiento, Luis G., Roger, Thomas, Giovinazzo, Jérôme, Brown, B. Alex, Blank, Bertram, Rudolph, Dirk, Kankainen, Anu, Alvarez-Pol, Héctor, Raj, Alex Arokia, Ascher, Pauline, Block, Michael, Caamaño-Fresco, Manuel, Caceres, Lucia, Canete, Laetitia, Cox, Daniel M., Eronen, Tommi, Fahlander, Claes, Fernández-Domínguez, Beatriz, Forsberg, Ulrika, Lois-Fuentes, Juan, Gerbaux, Mathias, Gerl, Jürgen, Golubev, Pavel, Grévy, Stéphane, Grinyer, Gwen F., Habermann, Tobias, Hakala, Jani, Jokinen, Ari, Kamalou, Omar, Kojouharov, Ivan, Kolhinen, Veli S., Koponen, Jukka, Kurz, Nikolaus, Lalović, Nataša, Lorenz, Christian, Mauss, Benoit, Mentana, Alice, Moore, Iain D., Ortega Moral, Aurora, Pancin, Julien, Papadakis, Philippos, Pibernat, Jérôme, Piot, Julien, Pohjalainen, Ilkka, Reinikainen, Juuso, Rinta-Antila, Sami, Schaffner, Henning, Sorlin, Olivier, Stodel, Christelle, Thomas, Jean-Charles, Versteegen, Maud, Voss, Annika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10520006/
https://www.ncbi.nlm.nih.gov/pubmed/37749147
http://dx.doi.org/10.1038/s41467-023-39389-2
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author Sarmiento, Luis G.
Roger, Thomas
Giovinazzo, Jérôme
Brown, B. Alex
Blank, Bertram
Rudolph, Dirk
Kankainen, Anu
Alvarez-Pol, Héctor
Raj, Alex Arokia
Ascher, Pauline
Block, Michael
Caamaño-Fresco, Manuel
Caceres, Lucia
Canete, Laetitia
Cox, Daniel M.
Eronen, Tommi
Fahlander, Claes
Fernández-Domínguez, Beatriz
Forsberg, Ulrika
Lois-Fuentes, Juan
Gerbaux, Mathias
Gerl, Jürgen
Golubev, Pavel
Grévy, Stéphane
Grinyer, Gwen F.
Habermann, Tobias
Hakala, Jani
Jokinen, Ari
Kamalou, Omar
Kojouharov, Ivan
Kolhinen, Veli S.
Koponen, Jukka
Kurz, Nikolaus
Lalović, Nataša
Lorenz, Christian
Mauss, Benoit
Mentana, Alice
Moore, Iain D.
Ortega Moral, Aurora
Pancin, Julien
Papadakis, Philippos
Pibernat, Jérôme
Piot, Julien
Pohjalainen, Ilkka
Reinikainen, Juuso
Rinta-Antila, Sami
Schaffner, Henning
Sorlin, Olivier
Stodel, Christelle
Thomas, Jean-Charles
Versteegen, Maud
Voss, Annika
author_facet Sarmiento, Luis G.
Roger, Thomas
Giovinazzo, Jérôme
Brown, B. Alex
Blank, Bertram
Rudolph, Dirk
Kankainen, Anu
Alvarez-Pol, Héctor
Raj, Alex Arokia
Ascher, Pauline
Block, Michael
Caamaño-Fresco, Manuel
Caceres, Lucia
Canete, Laetitia
Cox, Daniel M.
Eronen, Tommi
Fahlander, Claes
Fernández-Domínguez, Beatriz
Forsberg, Ulrika
Lois-Fuentes, Juan
Gerbaux, Mathias
Gerl, Jürgen
Golubev, Pavel
Grévy, Stéphane
Grinyer, Gwen F.
Habermann, Tobias
Hakala, Jani
Jokinen, Ari
Kamalou, Omar
Kojouharov, Ivan
Kolhinen, Veli S.
Koponen, Jukka
Kurz, Nikolaus
Lalović, Nataša
Lorenz, Christian
Mauss, Benoit
Mentana, Alice
Moore, Iain D.
Ortega Moral, Aurora
Pancin, Julien
Papadakis, Philippos
Pibernat, Jérôme
Piot, Julien
Pohjalainen, Ilkka
Reinikainen, Juuso
Rinta-Antila, Sami
Schaffner, Henning
Sorlin, Olivier
Stodel, Christelle
Thomas, Jean-Charles
Versteegen, Maud
Voss, Annika
author_sort Sarmiento, Luis G.
collection PubMed
description The observation of a weak proton-emission branch in the decay of the 3174-keV (53m)Co isomeric state marked the discovery of proton radioactivity in atomic nuclei in 1970. Here we show, based on the partial half-lives and the decay energies of the possible proton-emission branches, that the exceptionally high angular momentum barriers, [Formula: see text] and [Formula: see text] , play a key role in hindering the proton radioactivity from (53m)Co, making them very challenging to observe and calculate. Indeed, experiments had to wait decades for significant advances in accelerator facilities and multi-faceted state-of-the-art decay stations to gain full access to all observables. Combining data taken with the TASISpec decay station at the Accelerator Laboratory of the University of Jyväskylä, Finland, and the ACTAR TPC device on LISE3 at GANIL, France, we measured their branching ratios as b(p1) = 1.3(1)% and b(p2) = 0.025(4)%. These results were compared to cutting-edge shell-model and barrier penetration calculations. This description reproduces the order of magnitude of the branching ratios and partial half-lives, despite their very small spectroscopic factors.
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spelling pubmed-105200062023-09-27 Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co Sarmiento, Luis G. Roger, Thomas Giovinazzo, Jérôme Brown, B. Alex Blank, Bertram Rudolph, Dirk Kankainen, Anu Alvarez-Pol, Héctor Raj, Alex Arokia Ascher, Pauline Block, Michael Caamaño-Fresco, Manuel Caceres, Lucia Canete, Laetitia Cox, Daniel M. Eronen, Tommi Fahlander, Claes Fernández-Domínguez, Beatriz Forsberg, Ulrika Lois-Fuentes, Juan Gerbaux, Mathias Gerl, Jürgen Golubev, Pavel Grévy, Stéphane Grinyer, Gwen F. Habermann, Tobias Hakala, Jani Jokinen, Ari Kamalou, Omar Kojouharov, Ivan Kolhinen, Veli S. Koponen, Jukka Kurz, Nikolaus Lalović, Nataša Lorenz, Christian Mauss, Benoit Mentana, Alice Moore, Iain D. Ortega Moral, Aurora Pancin, Julien Papadakis, Philippos Pibernat, Jérôme Piot, Julien Pohjalainen, Ilkka Reinikainen, Juuso Rinta-Antila, Sami Schaffner, Henning Sorlin, Olivier Stodel, Christelle Thomas, Jean-Charles Versteegen, Maud Voss, Annika Nat Commun Article The observation of a weak proton-emission branch in the decay of the 3174-keV (53m)Co isomeric state marked the discovery of proton radioactivity in atomic nuclei in 1970. Here we show, based on the partial half-lives and the decay energies of the possible proton-emission branches, that the exceptionally high angular momentum barriers, [Formula: see text] and [Formula: see text] , play a key role in hindering the proton radioactivity from (53m)Co, making them very challenging to observe and calculate. Indeed, experiments had to wait decades for significant advances in accelerator facilities and multi-faceted state-of-the-art decay stations to gain full access to all observables. Combining data taken with the TASISpec decay station at the Accelerator Laboratory of the University of Jyväskylä, Finland, and the ACTAR TPC device on LISE3 at GANIL, France, we measured their branching ratios as b(p1) = 1.3(1)% and b(p2) = 0.025(4)%. These results were compared to cutting-edge shell-model and barrier penetration calculations. This description reproduces the order of magnitude of the branching ratios and partial half-lives, despite their very small spectroscopic factors. Nature Publishing Group UK 2023-09-25 /pmc/articles/PMC10520006/ /pubmed/37749147 http://dx.doi.org/10.1038/s41467-023-39389-2 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Sarmiento, Luis G.
Roger, Thomas
Giovinazzo, Jérôme
Brown, B. Alex
Blank, Bertram
Rudolph, Dirk
Kankainen, Anu
Alvarez-Pol, Héctor
Raj, Alex Arokia
Ascher, Pauline
Block, Michael
Caamaño-Fresco, Manuel
Caceres, Lucia
Canete, Laetitia
Cox, Daniel M.
Eronen, Tommi
Fahlander, Claes
Fernández-Domínguez, Beatriz
Forsberg, Ulrika
Lois-Fuentes, Juan
Gerbaux, Mathias
Gerl, Jürgen
Golubev, Pavel
Grévy, Stéphane
Grinyer, Gwen F.
Habermann, Tobias
Hakala, Jani
Jokinen, Ari
Kamalou, Omar
Kojouharov, Ivan
Kolhinen, Veli S.
Koponen, Jukka
Kurz, Nikolaus
Lalović, Nataša
Lorenz, Christian
Mauss, Benoit
Mentana, Alice
Moore, Iain D.
Ortega Moral, Aurora
Pancin, Julien
Papadakis, Philippos
Pibernat, Jérôme
Piot, Julien
Pohjalainen, Ilkka
Reinikainen, Juuso
Rinta-Antila, Sami
Schaffner, Henning
Sorlin, Olivier
Stodel, Christelle
Thomas, Jean-Charles
Versteegen, Maud
Voss, Annika
Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co
title Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co
title_full Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co
title_fullStr Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co
title_full_unstemmed Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co
title_short Elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)Co
title_sort elucidating the nature of the proton radioactivity and branching ratio on the first proton emitter discovered (53m)co
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10520006/
https://www.ncbi.nlm.nih.gov/pubmed/37749147
http://dx.doi.org/10.1038/s41467-023-39389-2
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