A E Stuchbery
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Explore the profile of A E Stuchbery including associated specialties, affiliations and a list of published articles.
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16
Citations
15
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Recent Articles
1.
Gray T, Allmond J, Xu Z, King T, Lubna R, Crawford H, et al.
Phys Rev Lett
. 2023 Jun;
130(24):242501.
PMID: 37390416
Excited-state spectroscopy from the first experiment at the Facility for Rare Isotope Beams (FRIB) is reported. A 24(2)-μs isomer was observed with the FRIB Decay Station initiator (FDSi) through a...
2.
Palazzo T, Mitchell A, Lane G, Stuchbery A, Brown B, Reed M, et al.
Phys Rev Lett
. 2023 Apr;
130(12):122503.
PMID: 37027850
The only proposed observation of a discrete, hexacontatetrapole (E6) transition in nature occurs from the T_{1/2}=2.54(2)-min decay of ^{53m}Fe. However, there are conflicting claims concerning its γ-decay branching ratio, and...
3.
Ideguchi E, Kibedi T, Dowie J, Hoang T, Kumar Raju M, Aoi N, et al.
Phys Rev Lett
. 2022 Jul;
128(25):252501.
PMID: 35802446
The electric monopole (E0) transition strength ρ^{2} for the transition connecting the third 0^{+} level, a "superdeformed" band head, to the "spherical" 0^{+} ground state in doubly magic ^{40}Ca is...
4.
Kibedi T, Alshahrani B, Stuchbery A, Larsen A, Gorgen A, Siem S, et al.
Phys Rev Lett
. 2020 Nov;
125(18):182701.
PMID: 33196226
The cascading 3.21 and 4.44 MeV electric quadrupole transitions have been observed from the Hoyle state at 7.65 MeV excitation energy in ^{12}C, excited by the ^{12}C(p,p^{'}) reaction at 10.7 ...
5.
Gray T, Allmond J, Stuchbery A, Yu C, Baktash C, Gargano A, et al.
Phys Rev Lett
. 2020 Feb;
124(3):032502.
PMID: 32031845
Radioactive ^{129}Sb, which can be treated as a proton plus semimagic ^{128}Sn core within the particle-core coupling scheme, was studied by Coulomb excitation. Reduced electric quadrupole transition probabilities, B(E2), for...
6.
Alotiby M, Greguric I, Kibedi T, Lee B, Roberts M, Stuchbery A, et al.
Phys Med Biol
. 2018 Feb;
63(6):06NT04.
PMID: 29480815
Auger electrons emitted after nuclear decay have potential application in targeted cancer therapy. For this purpose it is important to know the Auger electron yield per nuclear decay. In this...
7.
Fonslet J, Lee B, Tran T, Siragusa M, Jensen M, Kibedi T, et al.
Phys Med Biol
. 2017 Dec;
63(1):015026.
PMID: 29286003
La has favorable nuclear and chemical properties for Auger-based targeted internal radiotherapy. Here we present detailed investigations of the production, emissions, and dosimetry related to La therapy. La was produced...
8.
Allmond J, Stuchbery A, Baktash C, Gargano A, Galindo-Uribarri A, Radford D, et al.
Phys Rev Lett
. 2017 Mar;
118(9):092503.
PMID: 28306272
Radioactive ^{136}Te has two valence protons and two valence neutrons outside of the ^{132}Sn double shell closure, providing a simple laboratory for exploring the emergence of collectivity and nucleon-nucleon interactions....
9.
Sotty C, Zielinska M, Georgiev G, Balabanski D, Stuchbery A, Blazhev A, et al.
Phys Rev Lett
. 2015 Nov;
115(20):209902.
PMID: 26613483
No abstract available.
10.
Sotty C, Zielinska M, Georgiev G, Balabanski D, Stuchbery A, Blazhev A, et al.
Phys Rev Lett
. 2015 Nov;
115(17):172501.
PMID: 26551106
Excited states of the neutron-rich nuclei (97,99)Rb were populated for the first time using the multistep Coulomb excitation of radioactive beams. Comparisons of the results with particle-rotor model calculations provide...