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014304","url":"https://andreewelker.com/en/research/neutron-rich-isotopes-n20-in-trap-decay","identifier":"10.1103/PhysRevC.100.014304","topics":["Nuclear physics","CERN","ISOLDE","Mass spectrometry"],"evidenceStatus":"verified","canonicalSource":"https://doi.org/10.1103/PhysRevC.100.014304"},{"slug":"qec-sodium-magnesium-mirror-decays","title":"QEC-value determination for 21Na→21Ne and 23Mg→23Na mirror-nuclei decays using high-precision mass spectrometry with ISOLTRAP","category":"peer-reviewed","date":"2019-07-15","venue":"Physical Review C 100, 015502","url":"https://andreewelker.com/en/research/qec-sodium-magnesium-mirror-decays","identifier":"10.1103/PhysRevC.100.015502","topics":["Nuclear physics","CERN","ISOLDE","Mass spectrometry","Weak interaction"],"evidenceStatus":"verified","canonicalSource":"https://doi.org/10.1103/PhysRevC.100.015502"},{"slug":"hyperfine-look-titanium-dioxide","title":"A hyperfine look at titanium 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034308","url":"https://andreewelker.com/en/research/hyperfine-anomaly-gold-isomers","identifier":"10.1103/PhysRevC.101.034308","topics":["Nuclear physics","CERN","ISOLDE","Laser spectroscopy"],"evidenceStatus":"verified","canonicalSource":"https://doi.org/10.1103/PhysRevC.101.034308"},{"slug":"coulomb-excitation-proton-rich-n80","title":"Coulomb Excitation of Proton-rich N = 80 Isotones at HIE-ISOLDE","category":"conference-proceeding","date":"2020-05-01","venue":"Journal of Physics: Conference Series 1555, 012027","topics":["Nuclear physics","CERN","ISOLDE","Coulomb excitation"],"evidenceStatus":"source-pending","url":"https://andreewelker.com/en/research/coulomb-excitation-proton-rich-n80"},{"slug":"shape-coexistence-gold-187","title":"Shape coexistence in 187Au studied by laser spectroscopy","category":"peer-reviewed","date":"2020-06-25","venue":"Physical Review C 101, 064321","url":"https://andreewelker.com/en/research/shape-coexistence-gold-187","identifier":"10.1103/PhysRevC.101.064321","topics":["Nuclear physics","CERN","ISOLDE","Laser spectroscopy"],"evidenceStatus":"verified","canonicalSource":"https://doi.org/10.1103/PhysRevC.101.064321"},{"slug":"n28-shell-closure-argon-masses","title":"Examining the N = 28 shell closure through high-precision mass measurements of 46–48Ar","category":"peer-reviewed","date":"2020-07-01","venue":"Physical Review C 102, 014301","url":"https://andreewelker.com/en/research/n28-shell-closure-argon-masses","identifier":"10.1103/PhysRevC.102.014301","topics":["Nuclear physics","CERN","ISOLDE","Mass spectrometry"],"evidenceStatus":"verified","canonicalSource":"https://doi.org/10.1103/PhysRevC.102.014301"},{"slug":"short-lived-scandium-arsenic-bromine-mercury-masses","title":"Masses of short-lived 49Sc, 50Sc, 70As, 73Br and stable 196Hg nuclides","category":"peer-reviewed","date":"2020-07-24","venue":"Nuclear Physics A 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