High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED
Precision measurements provide a sensitive test of fundamental constants and their uncertainties. Here the authors precisely measure the hyperfine structure splitting in bismuth ions, and report significant discrepancy with the theoretical prediction of quantum electrodynamics.
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Nature Portfolio
2017
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oai:doaj.org-article:af36d1e2f6aa4742bd787a0a1e1632172021-12-02T14:42:19ZHigh precision hyperfine measurements in Bismuth challenge bound-state strong-field QED10.1038/ncomms154842041-1723https://doaj.org/article/af36d1e2f6aa4742bd787a0a1e1632172017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15484https://doaj.org/toc/2041-1723Precision measurements provide a sensitive test of fundamental constants and their uncertainties. Here the authors precisely measure the hyperfine structure splitting in bismuth ions, and report significant discrepancy with the theoretical prediction of quantum electrodynamics.Johannes UllmannZoran AndelkovicCarsten BrandauAndreas DaxWolfgang GeithnerChristopher GeppertChristian GorgesMichael HammenVolker HannenSimon KaufmannKristian KönigYuri A. LitvinovMatthias LochmannBernhard MaaßJohann MeisnerTobias MurböckRodolfo SánchezMatthias SchmidtStefan SchmidtMarkus SteckThomas StöhlkerRichard C. ThompsonChristian TrageserJonas VollbrechtChristian WeinheimerWilfried NörtershäuserNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017) |
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Science Q |
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Science Q Johannes Ullmann Zoran Andelkovic Carsten Brandau Andreas Dax Wolfgang Geithner Christopher Geppert Christian Gorges Michael Hammen Volker Hannen Simon Kaufmann Kristian König Yuri A. Litvinov Matthias Lochmann Bernhard Maaß Johann Meisner Tobias Murböck Rodolfo Sánchez Matthias Schmidt Stefan Schmidt Markus Steck Thomas Stöhlker Richard C. Thompson Christian Trageser Jonas Vollbrecht Christian Weinheimer Wilfried Nörtershäuser High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED |
description |
Precision measurements provide a sensitive test of fundamental constants and their uncertainties. Here the authors precisely measure the hyperfine structure splitting in bismuth ions, and report significant discrepancy with the theoretical prediction of quantum electrodynamics. |
format |
article |
author |
Johannes Ullmann Zoran Andelkovic Carsten Brandau Andreas Dax Wolfgang Geithner Christopher Geppert Christian Gorges Michael Hammen Volker Hannen Simon Kaufmann Kristian König Yuri A. Litvinov Matthias Lochmann Bernhard Maaß Johann Meisner Tobias Murböck Rodolfo Sánchez Matthias Schmidt Stefan Schmidt Markus Steck Thomas Stöhlker Richard C. Thompson Christian Trageser Jonas Vollbrecht Christian Weinheimer Wilfried Nörtershäuser |
author_facet |
Johannes Ullmann Zoran Andelkovic Carsten Brandau Andreas Dax Wolfgang Geithner Christopher Geppert Christian Gorges Michael Hammen Volker Hannen Simon Kaufmann Kristian König Yuri A. Litvinov Matthias Lochmann Bernhard Maaß Johann Meisner Tobias Murböck Rodolfo Sánchez Matthias Schmidt Stefan Schmidt Markus Steck Thomas Stöhlker Richard C. Thompson Christian Trageser Jonas Vollbrecht Christian Weinheimer Wilfried Nörtershäuser |
author_sort |
Johannes Ullmann |
title |
High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED |
title_short |
High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED |
title_full |
High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED |
title_fullStr |
High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED |
title_full_unstemmed |
High precision hyperfine measurements in Bismuth challenge bound-state strong-field QED |
title_sort |
high precision hyperfine measurements in bismuth challenge bound-state strong-field qed |
publisher |
Nature Portfolio |
publishDate |
2017 |
url |
https://doaj.org/article/af36d1e2f6aa4742bd787a0a1e163217 |
work_keys_str_mv |
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