activity
20162022
most citedMasses of neutron-rich Sc and Ti nuclides: The subshell closure in scandium

37 citations · 75 across the 3 of their papers we have counts for

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9 papers · 1 filter

nucl-ex2020

Mass measurements for -shell nuclei Ti, Cr, Mn, Fe, Co and Ni

C. Y. Fu, Y. H. Zhang, M. Wang +26

By using isochronous mass spectrometry (IMS) at the experimental cooler storage ring CSRe, masses of short-lived Cr, Mn, Fe, Co and Ni were measu…

nucl-ex20204 cited

Determination of luminosity for in-ring reactions: A new approach for the low-energy domain

Y. M. Xing, J. Glorius, L. Varga +59

Luminosity is a measure of the colliding frequency between beam and target and it is a crucial parameter for the measurement of absolute values, such as reaction cross sections. In…

nucl-ex2019

New Test of Modulated Electron Capture Decay of Hydrogen-Like Pm Ions: Precision Measurement of Purely Exponential Decay

F. C. Ozturk, B. Akkus, D. Atanasov +92

An experiment addressing electron capture (EC) decay of hydrogen-like Pm ions has been conducted at the experimental storage ring (ESR) at GSI. The decay appears to…

nucl-ex201937 cited

Masses of neutron-rich Sc and Ti nuclides: The subshell closure in scandium

X. Xu, M. Wang, K. Blaum +36

Isochronous mass spectrometry has been applied in the storage ring CSRe to measure the masses of the neutron-rich Sc and Ti nuclei. The new mass…

nucl-ex2019

Improving the resolving power of Isochronous Mass Spectrometry by employing an in-ring mechanical slit

J. H. Liu, X. Xu, P. Zhang +31

Isochronous Mass Spectrometry (IMS) in heavy-ion storage rings is an excellent experimental method for precision mass measurements of exotic nuclei. In the IMS, the storage ring is…

nucl-ex2018

Application of isochronous mass spectrometry for the study of angular momentum population in projectile fragmentation reactions

X. L. Tu, A. Kelic-Heil, Yu. A. Litvinov +37

Isochronous mass spectrometry was applied to measure isomeric yield ratios of fragmentation reaction products. This approach is complementary to conventional gamma-ray spectroscopy…