6533b857fe1ef96bd12b5128

RESEARCH PRODUCT

Fast-timing Measurement in \(^{96}\)Pd: Improved Accuracy for the Lifetime of the \(4_1^{+}\) State

A. YanevaS. JazrawiB. DasM. MikolajczukM. GórskaP. H. ReganB. CederwallJ. JolieG. BenzoniH. M. AlbersS. AlhomaidhiT. AriciA. BanerjeeM. M. R. ChishtiT. DavinsonJ. GerlO. HallN. HubbardI. KojouharovA. K. MistryM. PolettiniM. RudigierE. SahinH. SchaffnerA. SharmaH. J. WollersheimP. BoutachkovT. DickelE. HaettnerH. HeggenHornung Ch.R. KnöbelD. KostylevaN. KurzN. KuzminchukI. MukhaS. PietriW. R. PlassZs. PodolyakC. ScheidenbergerY. K. TanakaJ. VesicH. WeickU. AhmedÖ. AktasA. AlgoraC. AppletonJ. BenitoA. BlazhevA. BraccoA. BruceM. BrunetR. CanavanA. EsmaylzadehL. M. FraileG. HäfnerK. P. HuckaP. R. JohnD. KahlV. KarayonchevR. KernG. KosirR. LozevaP. NapirallaB. S. Nara SinghR. D. PageC. M. PetracheN. PietrallaJ.-m. RegisH. RöschP. RuotsalainenV. Sanchez-tembleL. SextonR. ShearmanM. SiV. WernerJ. WiederholdK. WimmerW. WittP. WoodsG. Zimba

subject

General Physics and Astronomyydinfysiikka

description

Direct lifetime measurements via γ–γ coincidences using the FATIMA fast-timing LaBr3(Ce) array were performed for the excited states below previously reported isomers. In the N = 50 semi-magic 96Pd nucleus, lifetimes below the I π = 8+ seniority isomer were addressed as a benchmark for further analysis. The results for the I π = 2+ and 4 + states confirm the published values. Increased accuracy for the lifetime value was achieved for the 4 + state. peerReviewed

https://doi.org/10.5506/aphyspolbsupp.16.4-a30