activity
20182021
most cited and -delayed neutron decay of the nucleus In

13 citations · 47 across the 8 of their papers we have counts for

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10 papers · 1 filter

nucl-ex20214 cited

Spectroscopic studies of neutron-rich In and its -decay daughter, Sn, using the GRIFFIN spectrometer

F. H. Garcia, C. Andreoiu, G. C. Ball +24

The -decay of neutron-rich In into Sn was studied using the GRIFFIN spectrometer at the ISAC facility at TRIUMF. The study observed the half-lives of the ground…

nucl-ex20208 cited

High-Precision Branching Ratio Measurement and Spin Assignment Implications for Ga Superallowed Decay

A. D. MacLean, A. T. Laffoley, C. E. Svensson +48

A high-precision branching ratio measurement for the superallowed Fermi emitter Ga was performed with the Gamma-Ray Infrastructure for Fundamental Investigations of…

nucl-ex20201 cited

Single-particle structure in neutron-rich Sr isotopes approaching the N = 60 shape transition

S. Cruz, K. Wimmer, S. S. Bhattacharjee +33

Background: Neutron-rich nuclei around neutron number N = 60 show a dramatic shape transition from spherical ground states to prolate deformation in 98Sr and heavier nuclei. Purpos…

nucl-ex20209 cited

Decay of In and Spectroscopy of Sn and Sb with the GRIFFIN Spectrometer

K. Whitmore, C. Andreoiu, F. H. Garcia +25

Spectroscopy of doubly magic Sn has been performed with the GRIFFIN spectrometer at TRIUMF-ISAC following the decay of In. The analysis…

nucl-ex2020

Collective 2p-2h intruder states in Sn studied via -decay of In using GRIFFIN

K. Ortner, C. Andreoiu, M. Spieker +25

The low-lying structure of semi-magic Sn has been investigated through the -decay of In ( min) to study shape coexistence via the reduced transitio…

nucl-ex2019

Single-Particle Structure of Neutron-Rich Sr Isotopes Via d( 94,95,96 Sr, p) Reactions

S. Cruz, K. Wimmer, P. C. Bender +32

The region around neutron number N = 60 in the neutron-rich Sr and Zr nuclei is one of the most dramatic examples of a ground state shape transition from (near) spherical below N =…