0000000001274870

AUTHOR

H. Joukainen

showing 2 related works from this author

Position sensitive plastic scintillator for beta particle detection

2022

A new segmented plastic scintillator detector Tuike has been developed for recoil-beta tagging experiments at the Accelerator Laboratory of the University of Jyväskylä. The detector consists of individual plastic scintillator bars arranged in two orthogonal layers, and the scintillation light is detected using silicon photomultipliers. Performance of the new detector was tested using fusion-evaporation reaction 40Ca(36Ar, pn)74Rb, and the results are discussed here. It was found that for beta particles seen in the main silicon detector, Tuike can tag high-energy beta particles with a 48(10)% efficiency. An energy calibration method using Compton edges of gamma ray transitions is described i…

Nuclear and High Energy Physics010308 nuclear & particles physicsPhysics::Instrumentation and Detectorsbeetasäteilyrecoil-beta taggingtutkimuslaitteet01 natural sciencesplastic scintillatorilmaisimet0103 physical sciences010306 general physicsydinfysiikkaInstrumentationdecay tagging
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Nanosecond-Scale Proton Emission from Strongly Oblate-Deformed ^{149}Lu.

2021

Using the fusion-evaporation reaction ^{96}Ru(^{58}Ni,p4n)^{149}Lu and the MARA vacuum-mode recoil separator, a new proton-emitting isotope ^{149}Lu has been identified. The measured decay Q value of 1920(20) keV is the highest measured for a ground-state proton decay, and it naturally leads to the shortest directly measured half-life of 450_{-100}^{+170}  ns for a ground-state proton emitter. The decay rate is consistent with l_{p}=5 emission, suggesting a dominant πh_{11/2} component for the wave function of the proton-emitting state. Through nonadiabatic quasiparticle calculations it was concluded that ^{149}Lu is the most oblate deformed proton emitter observed to date.

protonitPhysics::Accelerator PhysicsNuclear Experimentydinfysiikkaemissio (fysiikka)Physical review letters
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