6533b872fe1ef96bd12d4296

RESEARCH PRODUCT

Studying Gamow-Teller transitions and the assignment of isomeric and ground states at $N=50$

Ali MollaebrahimiChristine HornungTimo DickelDaler AmanbayevGabriella Kripko-konczWolfgang R. PlaßSamuel Ayet San AndrésSönke BeckAndrey BlazhevJulian BergmannHans GeisselMagdalena GórskaHubert GraweFlorian GreinerEmma HaettnerNasser Kalantar-nayestanakiIvan MiskunFrédéric NowackiChristoph ScheidenbergerSoumya BagchiDimiter L. BalabanskiZiga BrencicOlga CharviakovaPaul ConstantinMasoumeh DehghanJens EbertLizzy GröfOscar HallMuhsin N. HarakehSatbir KaurAnu KankainenRonja KnöbelDaria A. KostylevaNatalia KurkovaNatalia KuzminchukIsrael MardorDragos NichitaJan-hendrik OttoZygmunt PatykStephane PietriSivaji PurushothamanMoritz Pascal ReiterAnn-kathrin RinkHeidi RoeschAnamaria SpătaruGoran StanicAlexandru StateYoshiki K. TanakaMatjaz VenceljHelmut WeickJohn S. WinfieldMichael I. YavorJianwei Zhao

subject

nuclear isomersNuclear and High Energy PhysicsMultiple-reflection time-of-flight massNuclear shell structuremultiple-reflection time-of-flight mass[PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex]N = 50 isotonesFOS: Physical sciencesGamow-Teller transition?s strength114 Physical sciencesSpectrometerexotic nucleiGamow-Teller transition's strengthnuclear shell structureNuclear isomersspectrometerN=50 isotonesNuclear Experiment (nucl-ex)ydinfysiikkaNuclear ExperimentExotic nuclei

description

Direct mass measurements of neutron-deficient nuclides around the N=50 shell closure below $^{100}$Sn were performed at the FRS Ion Catcher (FRS-IC) at GSI, Germany. The nuclei were produced by projectile fragmentation of $^{124}$Xe, separated in the fragment separator FRS and delivered to the FRS-IC. The masses of 14 ground states and two isomers were measured with relative mass uncertainties down to 1×10−7 using the multiple-reflection time-of-flight mass spectrometer of the FRS-IC, including the first direct mass measurements of $^{98}$Cd and $^{97}$Rh. A new QEC=5437±67 keV was obtained for $^{98}$Cd, resulting in a summed Gamow-Teller (GT) strength for the five observed transitions (0+⟶1+) as B(GT)=2.94−0.28+0.32. Investigation of this result in state-of-the-art shell model approaches accounting for the first time experimentally observed spectrum of GT transitions points to a perfect agreement for N=50 isotones. The excitation energy of the long-lived isomeric state in $^{94}$Rh was determined for the first time to be 293±21 keV. This, together with the shell model calculations, allows the level ordering in $^{94}$Rh to be understood.

https://hal.science/hal-03815210