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author Butler, Peter
Gaffney, Liam
Spagnoletti, Pietro
Konki, Joonas
Scheck, Marcus
Smith, John
Abrahams, Kenzo
Bowry, Michael
Cederkäll, Joakim
Chupp, Timothy
de Angelis, Giacomo
Witte, Hilde De
Garrett, Paul
Goldkuhle, Alina
Henrich, Corinna
Illana, Andres
Johnston, Karl
Joss, David
Keatings, James
Kelly, Nicola
Komorowska, Michalina
Kröll, Thorsten
Lozano, Miguel
Singh, Bondili Nara
O'Donnell, David
Ojala, Joonas
Page, Robert
Pedersen, Line
Raison, Christopher
Reiter, Peter
Rodriguez, Jose Alberto
Rosiak, Dawid
Rothe, Sebastian
Shneidman, Timur
Siebeck, Burkhard
Seidlitz, Michael
Sinclair, Jacqueline
Stryjczyk, Marek
Van Duppen, Piet
Vinals, Silvia
Virtanen, Ville
Warr, Nigel
Wrzosek-Lipska, Kasia
Zielinska, Magda
author_facet Butler, Peter
Gaffney, Liam
Spagnoletti, Pietro
Konki, Joonas
Scheck, Marcus
Smith, John
Abrahams, Kenzo
Bowry, Michael
Cederkäll, Joakim
Chupp, Timothy
de Angelis, Giacomo
Witte, Hilde De
Garrett, Paul
Goldkuhle, Alina
Henrich, Corinna
Illana, Andres
Johnston, Karl
Joss, David
Keatings, James
Kelly, Nicola
Komorowska, Michalina
Kröll, Thorsten
Lozano, Miguel
Singh, Bondili Nara
O'Donnell, David
Ojala, Joonas
Page, Robert
Pedersen, Line
Raison, Christopher
Reiter, Peter
Rodriguez, Jose Alberto
Rosiak, Dawid
Rothe, Sebastian
Shneidman, Timur
Siebeck, Burkhard
Seidlitz, Michael
Sinclair, Jacqueline
Stryjczyk, Marek
Van Duppen, Piet
Vinals, Silvia
Virtanen, Ville
Warr, Nigel
Wrzosek-Lipska, Kasia
Zielinska, Magda
author_sort Butler, Peter
collection CERN
description There is a large body of evidence that atomic nuclei can undergo octupole distortion and assume the shape of a pear. This phenomenon is important for measurements of electric-dipole moments of atoms, which would indicate CP violation and hence probe physics beyond the Standard Model of particle physics. Isotopes of both radon and radium have been identified as candidates for such measurements. Here, we have observed the low-lying quantum states in 224Rn and 226Rn by accelerating beams of these radioactive nuclei. We show that radon isotopes undergo octupole vibrations but do not possess static pear-shapes in their ground states. We conclude that radon atoms provide less favourable conditions for the enhancement of a measurable atomic electric-dipole moment.
id cern-2836704
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-28367042022-10-13T19:32:24Zdoi:10.1051/epjconf/201922301007http://cds.cern.ch/record/2836704engButler, PeterGaffney, LiamSpagnoletti, PietroKonki, JoonasScheck, MarcusSmith, JohnAbrahams, KenzoBowry, MichaelCederkäll, JoakimChupp, Timothyde Angelis, GiacomoWitte, Hilde DeGarrett, PaulGoldkuhle, AlinaHenrich, CorinnaIllana, AndresJohnston, KarlJoss, DavidKeatings, JamesKelly, NicolaKomorowska, MichalinaKröll, ThorstenLozano, MiguelSingh, Bondili NaraO'Donnell, DavidOjala, JoonasPage, RobertPedersen, LineRaison, ChristopherReiter, PeterRodriguez, Jose AlbertoRosiak, DawidRothe, SebastianShneidman, TimurSiebeck, BurkhardSeidlitz, MichaelSinclair, JacquelineStryjczyk, MarekVan Duppen, PietVinals, SilviaVirtanen, VilleWarr, NigelWrzosek-Lipska, KasiaZielinska, MagdaCoulomb excitation of pear-shaped nucleiNuclear Physics - ExperimentThere is a large body of evidence that atomic nuclei can undergo octupole distortion and assume the shape of a pear. This phenomenon is important for measurements of electric-dipole moments of atoms, which would indicate CP violation and hence probe physics beyond the Standard Model of particle physics. Isotopes of both radon and radium have been identified as candidates for such measurements. Here, we have observed the low-lying quantum states in 224Rn and 226Rn by accelerating beams of these radioactive nuclei. We show that radon isotopes undergo octupole vibrations but do not possess static pear-shapes in their ground states. We conclude that radon atoms provide less favourable conditions for the enhancement of a measurable atomic electric-dipole moment.oai:cds.cern.ch:28367042019
spellingShingle Nuclear Physics - Experiment
Butler, Peter
Gaffney, Liam
Spagnoletti, Pietro
Konki, Joonas
Scheck, Marcus
Smith, John
Abrahams, Kenzo
Bowry, Michael
Cederkäll, Joakim
Chupp, Timothy
de Angelis, Giacomo
Witte, Hilde De
Garrett, Paul
Goldkuhle, Alina
Henrich, Corinna
Illana, Andres
Johnston, Karl
Joss, David
Keatings, James
Kelly, Nicola
Komorowska, Michalina
Kröll, Thorsten
Lozano, Miguel
Singh, Bondili Nara
O'Donnell, David
Ojala, Joonas
Page, Robert
Pedersen, Line
Raison, Christopher
Reiter, Peter
Rodriguez, Jose Alberto
Rosiak, Dawid
Rothe, Sebastian
Shneidman, Timur
Siebeck, Burkhard
Seidlitz, Michael
Sinclair, Jacqueline
Stryjczyk, Marek
Van Duppen, Piet
Vinals, Silvia
Virtanen, Ville
Warr, Nigel
Wrzosek-Lipska, Kasia
Zielinska, Magda
Coulomb excitation of pear-shaped nuclei
title Coulomb excitation of pear-shaped nuclei
title_full Coulomb excitation of pear-shaped nuclei
title_fullStr Coulomb excitation of pear-shaped nuclei
title_full_unstemmed Coulomb excitation of pear-shaped nuclei
title_short Coulomb excitation of pear-shaped nuclei
title_sort coulomb excitation of pear-shaped nuclei
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1051/epjconf/201922301007
http://cds.cern.ch/record/2836704
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