activity
20182025
most citedParticle identification and revolution time corrections for the isochronous mass spectrometry in storage rings

28 citations · 54 across the 6 of their papers we have counts for

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nucl-ex20259 cited

First Proton-Induced Cross Sections on a Stored Rare Ion Beam: Measurement of 118Te(p,γ) for Explosive Nucleosynthesis

F. Dellmann, J. Glorius, Yu. A. Litvinov +75

We present the first nuclear cross-section measurements of (p,γ) and (p,n) reactions on 118Te at energies relevant for the γ-process nucleosynthesis. Absolute cross-section values…

nucl-ex20251 cited

Half-life determination of heavy ions in a storage ring considering feeding and depleting background processes

R. J. Chen, G. Leckenby, R. S. Sidhu +49

Heavy-ion storage rings have relatively large momentum acceptance which allows for multiple ion species to circulate at the same time. This needs to be considered in radioactive de…

nucl-ex2025

Magicity Revealed by the Mass of the Proton Dripline Nucleus Si

Y. M. Xing, Y. F. Luo, Y. H. Zhang +36

Using the -defined isochronous mass spectrometry technique, we conducted the first mass measurement of the proton dripline nucleus Si. We confirm that Si is bound…

nucl-ex202510 cited

Bound-State Beta Decay of Ions and the LOREX Project

R. S. Sidhu, G. Leckenby, R. J. Chen +55

Stable Tl ions have the lowest known energy threshold for capturing electron neutrinos () of \,keV. The Lorandite Experiment (LOREX), proposed in th…

nucl-ex2023

Measurement of the Isolated Nuclear Two-Photon Decay in

D. Freire-Fernández, W. Korten, R. J. Chen +57

The nuclear two-photon or double-gamma () decay is a second-order electromagnetic process whereby a nucleus in an excited state emits two gamma rays simultaneously. To be able…

nucl-ex202028 cited

Particle identification and revolution time corrections for the isochronous mass spectrometry in storage rings

Y. M. Xing, Y. H. Zhang, M. Wang +20

In the isochronous mass spectrometry (IMS) performed at storage rings, masses of short-lived nuclides are determined through precision measurements of their mean revolution times.…